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Небесная энциклопедия

Космические корабли и станции, автоматические КА и методы их проектирования, бортовые комплексы управления, системы и средства жизнеобеспечения, особенности технологии производства ракетно-космических систем

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Мониторинг СМИ

Мониторинг СМИ и социальных сетей. Сканирование интернета, новостных сайтов, специализированных контентных площадок на базе мессенджеров. Гибкие настройки фильтров и первоначальных источников.

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Форма поиска

Поддерживает ввод нескольких поисковых фраз (по одной на строку). При поиске обеспечивает поддержку морфологии русского и английского языка
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Применить Всего найдено 17146. Отображено 100.
10-12-2002 дата публикации

УСТРОЙСТВО ДЛЯ МЕХАНИЧЕСКОЙ ОБРАБОТКИ ЭЛАСТИЧНОГО МАТЕРИАЛА

Номер: RU0000026485U1

Устройство для механической обработки эластичного материала, содержащее установленные на валу кольцевой нож с режущей кромкой, в полости которого расположен прижим для эластомера, и отгибающий корпус, отличающееся тем, что отгибающий корпус выполнен ступенчатым, причем в полости большого диаметра установлен с зазором кольцевой нож, а в полости меньшего диаметра установлены радиальные подшипники, плавающий стакан с эластичными втулками, металлические шайбы и поджимающая пружина, размещенная между двумя крышками. (19) RU (11) 26 485 (13) U1 (51) МПК B29C 37/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К СВИДЕТЕЛЬСТВУ (21), (22) Заявка: 2002112039/20 , 06.05.2002 (24) Дата начала отсчета срока действия патента: 06.05.2002 (46) Опубликовано: 10.12.2002 (73) Патентообладатель(и): Самарский государственный аэрокосмический университет им. акад. С.П.Королева 2 6 4 8 5 (72) Автор(ы): Комаров А.Д., Барвинок В.А., Моисеев В.К., Ткаченко И.С., Хибник Т.А., Шаров А.А. R U Адрес для переписки: 443086, г.Самара, Московское ш., 34, СГАУ, патентный отдел (71) Заявитель(и): Самарский государственный аэрокосмический университет им. акад. С.П.Королева 2 6 4 8 5 R U (57) Формула полезной модели Устройство для механической обработки эластичного материала, содержащее установленные на валу кольцевой нож с режущей кромкой, в полости которого расположен прижим для эластомера, и отгибающий корпус, отличающееся тем, что отгибающий корпус выполнен ступенчатым, причем в полости большого диаметра установлен с зазором кольцевой нож, а в полости меньшего диаметра установлены радиальные подшипники, плавающий стакан с эластичными втулками, металлические шайбы и поджимающая пружина, размещенная между двумя крышками. Ñòðàíèöà: 1 U 1 U 1 (54) УСТРОЙСТВО ДЛЯ МЕХАНИЧЕСКОЙ ОБРАБОТКИ ЭЛАСТИЧНОГО МАТЕРИАЛА U 1 U 1 2 6 4 8 5 2 6 4 8 5 R U R U Ñòðàíèöà: 2 RU 26 485 U1 RU 26 485 U1 RU 26 485 U1 RU 26 485 U1 RU 26 485 U1

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10-09-2003 дата публикации

Устройство для вырезки дисков из листовых эластичных материалов

Номер: RU0000032031U1

Устройство для вырезки дисков из листового эластичного материала, содержащее установленные в трехкулачковом патроне кулачки и механизм перемещении кулачков, отличающееся тем, что кулачки выполнены с возможностью закрепления резцов с обеих сторон кулачка. (19) RU (11) 32 031 (13) U1 (51) МПК B29C 37/00 (2000.01) РОССИЙСКОЕ АГЕНТСТВО ПО ПАТЕНТАМ И ТОВАРНЫМ ЗНАКАМ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (21), (22) Заявка: 2003108631/20 , 31.03.2003 (24) Дата начала отсчета срока действия патента: 31.03.2003 (46) Опубликовано: 10.09.2003 (72) Автор(ы): Комаров А.Д., Моисеев В.К., Васильев В.Н., Ткаченко И.С., Шаров А.А. 3 2 0 3 1 R U (57) Формула полезной модели Устройство для вырезки дисков из листового эластичного материала, содержащее установленные в трехкулачковом патроне кулачки и механизм перемещении кулачков, отличающееся тем, что кулачки выполнены с возможностью закрепления резцов с обеих сторон кулачка. Ñòðàíèöà: 1 U 1 U 1 (54) Устройство для вырезки дисков из листовых эластичных материалов 3 2 0 3 1 (73) Патентообладатель(и): Самарский государственный аэрокосмический университет им. акад. С.П. Королева R U Адрес для переписки: 443086, г.Самара, Московское ш., 34, СГАУ, патентный отдел (71) Заявитель(и): Самарский государственный аэрокосмический университет им. акад. С.П. Королева U 1 U 1 3 2 0 3 1 3 2 0 3 1 R U R U Ñòðàíèöà: 2 RU 32 031 U1 RU 32 031 U1 RU 32 031 U1 RU 32 031 U1 RU 32 031 U1 RU 32 031 U1

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10-03-2013 дата публикации

УСТРОЙСТВО ДЛЯ ОБРАБОТКИ ЗАГОТОВОК ИЗ ПЛАСТМАСС

Номер: RU0000125514U1

1. Устройство для обработки заготовок из пластмасс, содержащее расположенный на основании корпус с установленным в нем механизмом нанесения на обрабатываемую поверхность заготовки рифлений с роликом, на рабочей поверхности которого выполнены выступы, расположенные с заданным шагом, с возможностью перемещения, причем устройство установлено на суппорте токарного станка, отличающееся тем, что в зоне вращения заготовки установлена ванночка с химическими реагентами для обработки заготовки химическими реагентами при нанесении рифлений. 2. Устройство по п.1, отличающееся тем, что ванночка установлена под заготовкой и на ее дне установлены волосяные щетки с возможностью контакта с заготовкой для заполнения рифлений химическими реагентами. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 125 514 U1 (51) МПК B29C 37/00 (2006.01) B29C 59/04 (2006.01) B29L 31/00 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2012141850/05, 01.10.2012 (24) Дата начала отсчета срока действия патента: 01.10.2012 (45) Опубликовано: 10.03.2013 Бюл. № 7 (73) Патентообладатель(и): Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Тихоокеанский государственный университет" (RU) 1 2 5 5 1 4 R U Формула полезной модели 1. Устройство для обработки заготовок из пластмасс, содержащее расположенный на основании корпус с установленным в нем механизмом нанесения на обрабатываемую поверхность заготовки рифлений с роликом, на рабочей поверхности которого выполнены выступы, расположенные с заданным шагом, с возможностью перемещения, причем устройство установлено на суппорте токарного станка, отличающееся тем, что в зоне вращения заготовки установлена ванночка с химическими реагентами для обработки заготовки химическими реагентами при нанесении рифлений. 2. Устройство по п.1, отличающееся тем, что ванночка установлена под заготовкой и на ее дне установлены волосяные щетки с возможностью контакта с ...

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27-11-2015 дата публикации

УСТРОЙСТВО ДЛЯ ИЗГОТОВЛЕНИЯ СТРОИТЕЛЬНОГО БЛОКА

Номер: RU0000157366U1

1. Устройство для изготовления строительного блока, содержащее режущий механизм (1), опалубочную форму, состоящую из постельной стенки (2) и боковых стенок (3), отличающееся тем, что оно снабжено направляющими для перемещения режущего механизма (1), выполненными на боковых стенках (3). 2. Устройство по п. 1, отличающееся тем, что режущий механизм (1) выполнен с возможностью перемещения в продольном и в поперечном направлениях и имеет толкатель (4), выполненный в виде рамки. 3. Устройство по п. 1, отличающееся тем, что режущий механизм (1) снабжен нагреваемым элементом (5). 4. Устройство по п. 1, отличающееся тем, что опалубочная форма снабжена фиксаторами (6). 5. Устройство по п. 1, отличающееся тем, что направляющие выполнены в боковых стенках (3) в виде прорезей. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (51) МПК B29C 37/00 (13) 157 366 U1 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ (21)(22) Заявка: ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ 2015119389/02, 24.05.2015 (24) Дата начала отсчета срока действия патента: 24.05.2015 (72) Автор(ы): Сулим Александр Евгеньевич (RU) (73) Патентообладатель(и): Сулим Александр Евгеньевич (RU) R U Приоритет(ы): (22) Дата подачи заявки: 24.05.2015 (45) Опубликовано: 27.11.2015 Бюл. № 33 1 5 7 3 6 6 R U Формула полезной модели 1. Устройство для изготовления строительного блока, содержащее режущий механизм (1), опалубочную форму, состоящую из постельной стенки (2) и боковых стенок (3), отличающееся тем, что оно снабжено направляющими для перемещения режущего механизма (1), выполненными на боковых стенках (3). 2. Устройство по п. 1, отличающееся тем, что режущий механизм (1) выполнен с возможностью перемещения в продольном и в поперечном направлениях и имеет толкатель (4), выполненный в виде рамки. 3. Устройство по п. 1, отличающееся тем, что режущий механизм (1) снабжен нагреваемым элементом (5). 4. Устройство по п. 1, отличающееся тем, что опалубочная форма снабжена фиксаторами (6). 5. Устройство по п. 1, отличающееся тем ...

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26-03-2019 дата публикации

Оттискная ложка

Номер: RU0000187973U1

Полезная модель относится к области медицины и полимерной химии, более конкретно к лицевой хирургии, и может найти применение при обследовании, лечении и протезировании, как отдельного зуба (-ов), так и всей челюсти пациента, при помощи устройства, раскрытого в настоящей полезной модели. Оттискная стоматологическая ложка выполнена в виде монолитного тела из полимерного материала и содержит продолговатую центральную часть, расположенную вдоль продольной оси ложки, а также первый компонент, присоединенный к центральной части, и второй компонент, выполненные по размеру для размещения в полости рта пациента после помещения на нее материала для получения оттиска пациента, при этом указанные компоненты изогнуты относительно продольной оси с образованием симметричных правых и левых концевых частей, при этом между первым и вторым компонентами расположено множество секторов, расположенных по всей плоскости изгиба с равными интервалами между собой, каждый из секторов, кроме последнего, расположенного, соответственно, на левой и правой частях, присоединен противоположными сторонами, соответственно, к первому и второму компоненту с помощью двух элементов ослабленного сечения для каждой стороны, с возможностью удаления соответствующего сектора. Технический результат полезной модели заключается в упрощении использования оттискной ложки врачом и, как следствие, повышение удобства использования и сокращение времени проведения манипуляций при протезировании. РОССИЙСКАЯ ФЕДЕРАЦИЯ (19) RU (11) (13) 187 973 U1 (51) МПК B29C 37/02 (2006.01) ФЕДЕРАЛЬНАЯ СЛУЖБА ПО ИНТЕЛЛЕКТУАЛЬНОЙ СОБСТВЕННОСТИ (12) ОПИСАНИЕ ПОЛЕЗНОЙ МОДЕЛИ К ПАТЕНТУ (52) СПК B29C 37/02 (2018.08) (21)(22) Заявка: 2018146654, 26.12.2018 (24) Дата начала отсчета срока действия патента: (73) Патентообладатель(и): Васильев Владимир Алексеевич (RU) Дата регистрации: 26.03.2019 (56) Список документов, цитированных в отчете о поиске: RU 2555109 C2, 10.07.2015. US 4445854 A1, 01.05.1984. SU 53029 A1, 01.01.1938. RU 2276971 C2, 27 ...

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09-02-2012 дата публикации

Housing and fabrication method thereof

Номер: US20120032566A1

A housing includes a main body having an interface and a plastic portion molded on the interface. The main body defines a nanostructure in the interface. The nanostructure includes a plurality of regular, repeating units. A pitch between the adjacent units is in the range from 10 nanometers to 500 nanometers. A height of each unit is in the range from 10 nanometers to 100 nanometers. A surface roughness of the nanostructure is in the range from 1 nanometer to 10 nanometers.

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16-02-2012 дата публикации

Device and method for decorating plastic parts

Номер: US20120038082A1
Автор: Harald Burger, Martin Hahn
Принадлежит: Leonhard Kurz Stiftung and Co KG

There is described an apparatus for performing the in-mold decoration method with an injection tool ( 1 ). The injection tool ( 1 ) has a first tool portion ( 11 ) having a first mold recess ( 13 ) and a second tool portion ( 12 ) having a second mold recess ( 15 ) corresponding to the first mold recess. The second tool portion ( 12 ) has at least one injection passage ( 12 e ), wherein a portion of an endless decorative film ( 16 ) can be arranged between the first tool portion ( 11 ) and the second tool portion ( 12 ). The mold recess ( 13 ) of the first tool portion ( 11 ) has a raised edge region ( 14 ) extending in a closed configuration around the mold recess ( 13 ) and having an end face ( 14 s ) which is flattened or rounded or pointed in cross-section. The second tool portion ( 12 ) has a corresponding end face ( 12 s ) parallel to the end face ( 14 s ) of the raised edge region ( 14 ). When the injection tool ( 1 ) is closed there is a spacing (s) between the end face ( 14 s ) of the raised edge region ( 14 ) of the first tool portion ( 11 ) and the corresponding end face ( 12 s ) of the second tool portion ( 12 ) at least over a subregion, wherein the spacing is sealed by the decorative film ( 16 ). A method for same is further described.

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01-03-2012 дата публикации

Composite plate member

Номер: US20120052248A1
Автор: Chin-Hsing Horng
Принадлежит: Individual

A composite plate member having a high tensile strength is disclosed to include a metal plate member having opposing outer face and bonding face and binding units located on the bonding face, each binding unit having binding strips formed of a part of the bonding face and respectively obliquely extending from the bonding face at a predetermined angle, and a plastic plate member directly molded on the bonding face of the metal plate member by insert molding to have the binding strips be embedded in the plastic plate member.

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12-04-2012 дата публикации

Apparatus and method for manufacturing multi component plastic molded parts

Номер: US20120086141A1
Принадлежит: KraussMaffei Technologies GmbH

In a method of making multi-component plastic molded parts, using an apparatus which includes two outer platens with first half-molds, and a middle platen with second half-molds interacting with the first half-molds such as to define cavities in two parting planes for injection of a plastic melt and/or a PUR mixture, one of the first and second half-molds can move in increments relative to the other one of the first and second half-molds, thereby forming different cavities in the parting planes from cycle to cycle. In a first cycle preforms are produced in respective cavities and then held in one of the first and second half-molds as the other one of the first and second half-molds moves in increments. Further components can then be injected into cavities formed in the parting planes from cycle to cycle, while another process step can be executed from cycle to cycle in free half-molds.

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07-06-2012 дата публикации

Bi-Layer Rotomoulding Applications

Номер: US20120141708A1
Автор: Eric Maziers
Принадлежит: Total Petrochemicals Research Feluy SA

Bi-layer articles prepared by rotational moulding comprising: a. an internal layer prepared from a composition comprising from 50 to 100 wt % of polyethylene (PE) and from 50 to 0 wt % of functionalised polyolefin and; b. an external layer prepared from polyetherester or saturated polyester or polycarbonate wherein the adhesion between the two layers is achieved by the internal layer composition.

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14-06-2012 дата публикации

Mold release film and process for producing light emitting diode

Номер: US20120148820A1
Автор: Tamao Okuya
Принадлежит: Asahi Glass Co Ltd

To provide a mold release film for producing a light emitting diode by a mold, which is less susceptible to formation of pin holes or rupture and which is applicable to mass production of a light emitting diode by means of a mold having a plurality of cavities, and a process for producing a light emitting diode by means of such a mold release film. A mold release film to be disposed on the cavity surface of a mold to form a substantially hemispherical lens portion by encapsulating a light emitting element of a light emitting diode with an encapsulation resin, which release film has a thickness of from 16 to 175 μm and a tensile rupture elongation of from 600 to 3,000% at 110° C. as measured in accordance with JIS K7127, and a process for producing a light emitting diode by means of such a mold release film.

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28-06-2012 дата публикации

In-mold coated articles having controlled surface morphology and associated methods for manufacturing same

Номер: US20120164381A1
Автор: Brodie Wright, Paul Morgan
Принадлежит: Individual

An in-mold coated article that includes at least one of a controlled surface morphology and a predetermined color which is manufactured via a single- or multi-coat process. The in-mold coated article preferably resembles wood, leather, marble, granite, clay, etcetera. The present invention further provides methods for manufacturing in-mold coated articles using single-coat and/or multi-coat processes as disclosed herein.

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20-09-2012 дата публикации

Printed layer formation processing device and printed layer formation processing method

Номер: US20120237667A1
Автор: Minoru Koyama, Toru Fujita
Принадлежит: Seiko Epson Corp

A printed layer formation processing device performs a part of a process for forming a printed layer on a part of the print medium by a first colorant in a molded object formation process. The printed layer formation processing device includes: a formation amount correspondence relationship storage part that stores a formation amount correspondence relationship, which is a correspondence relationship between a degree of deformation of the print medium and a formation amount of the first colorant, which are correlated so that the thickness of the printed layer is substantially the same in respective regions of the molded object, a deformation degree acquisition part that acquires the degree of deformation in the respective regions of the print medium; and a formation amount determining part that determines the formation amount of the first colorant in the respective regions based on the degree of the deformation and the formation amount correspondence relationship.

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18-10-2012 дата публикации

Nanoimprint-mold release agent, surface treatment method, and nanoimprint mold

Номер: US20120263816A1
Принадлежит: Shin Etsu Chemical Co Ltd

A nanoimprint-mold release agent including an alkoxysilane compound represented by general formula (1) is provided wherein R f and R f ′ are each independently a fluoroalkyl group of 1 to 10 carbon atoms; R 1 is a hydrogen atom or an aliphatic monovalent hydrocarbon group of 1 to 6 carbon atoms; R 2 and R 3 are each independently methyl group or ethyl group; X and Y are each independently an ether linkage or an ester linkage; a and b are each 0 or 1; m, n, and p are each an integer of 0 to 6; q is an integer of 1 to 6 and r is an integer of 0 to 2.

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08-11-2012 дата публикации

A method and a placement tool for the manufacture of a non-crimp fabric

Номер: US20120279649A1
Принадлежит: AIRBUS OPERATIONS GMBH

Disclosed is a method for placing fibre-reinforced, pre-impregnated, planar semi-finished products on a placement tool for the manufacture of a non-crimp fabric, wherein a placement film is clamped on the placement tool for purposes of holding the non-crimp fabric, and by means of evacuation and/or the application of pressure is fixed in position on the placement tool and/or can be released from the latter. Also disclosed is a placement tool for the execution of such a method.

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29-11-2012 дата публикации

Mechanically collapsible shell for long cylinder production

Номер: US20120299215A1
Принадлежит: Lockheed Martin Corp

A system for removing a cured composite object from a mandrel is provided. The system includes a collapsible shell, wherein an inner surface of the shell is configured to slide over an outer surface of the mandrel and an outer surface of the shell is configured to have the composite object formed thereon. The system further includes an extractor comprising a first and second disk disposed along a rod, and an adjuster, wherein the second disk is configured to engage an end of the mandrel and the adjuster is configured to move the first disk along the rod relative to the second disk. The system further includes a spacer configured to fit between the first disk and a first end of the shell when the shell is placed on the mandrel. The spacer pushes the shell and the composite object formed thereon off of the mandrel when the adjuster moves the first disk towards the second disk.

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13-12-2012 дата публикации

Method and mould for moulding a wind turbine blade

Номер: US20120312469A1
Автор: Henrik Stiesdal
Принадлежит: SIEMENS AG

A mould for moulding a wind turbine blade using a reinforcing material and a matrix material is provided. The mould includes a solid non-stick lining, and wherein the material properties of the non-stick lining are chosen to prevent a matrix material from bonding with the non-stick lining of the mould. A method of moulding a wind turbine blade in a mould is also provided. The method includes applying a solid non-stick lining to an inside surface of the mould, assembling a reinforcement material lay-up for the wind turbine blade on the non-stick lining, distributing a matrix material through layers of the reinforcement material lay-up, performing curing steps to harden the matrix material, and subsequently removing the cured wind turbine blade from the mould.

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13-12-2012 дата публикации

Device for removably fixing a conductor to a current transformer housing

Номер: US20120315778A1
Принадлежит: Phoenix Contact GmbH and Co KG

The invention relates to a device for removably fixing a conductor ( 10 ) to a current transformer housing ( 12 ), comprising a fixing element ( 16 ) which runs through a retaining element ( 14 ) lying on the current transformer housing ( 12 ) and which at least partly sits against the surface of the conductor ( 10 ) when the conductor ( 10 ) is fixed on the current transformer housing ( 12 ). According to the invention, the fixing element ( 16 ) is designed such that when the conductor ( 10 ) is brought from an unfixed state and fixed on the current transformer housing ( 12 ), the fixing element ( 16 ) carries out a translational movement within the retaining element ( 14 ) along the longitudinal axis ( 54 ) of said fixing element in the direction of the conductor ( 10 ) and subsequently a rotational movement about the longitudinal axis ( 54 ) of said fixing element.

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10-01-2013 дата публикации

Sheet-shaped mold conveying/positioning device

Номер: US20130011507A1
Принадлежит: Toshiba Machine Co Ltd

A conveying/positioning device includes: a unused-mold placing device 9 that places a rolled mold MB of a sheet-shaped mold M thereon; a mold rolling-up device 11 that rolls up the flat sheet-shaped mold MA supplied from the unused-mold placing device 9 ; and a tension maintaining device that constantly maintains a tension of the flat sheet-shaped mold even if a form of the flat sheet-shaped mold is changed when the peeling is performed.

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10-01-2013 дата публикации

Active energy ray-curable resin composition, and production method for products with surfaces of fine concave-convex structures

Номер: US20130011572A1
Принадлежит: Mitsubishi Rayon Co Ltd

The present invention relates to a production method for a product having a cured resin layer with a fine concave-convex structure formed on the surface of a substrate, the method including filling the space between a mold having a fine concave-convex structure composed of anodized alumina on the surface and a substrate with an active energy ray-curable resin composition, and curing the composition by irradiation with active energy rays, thereby forming a cured resin layer into which the fine concave-convex structure has been transferred on the surface of the substrate, wherein (A) the method includes treating the surface of the mold with a release agent, at least at transfer initiation, and (B) the active energy ray-curable resin composition includes a polymerizable compound, a polymerization initiator and a (poly)oxyethylene alkyl phosphate ester compound.

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17-01-2013 дата публикации

Cure tool with integrated edge breather and method of making the same

Номер: US20130014901A1
Принадлежит: Boeing Co

A tool for curing a composite layup comprises a tool body having a surface adapted to support a composite layup thereon. The tool includes an integrated breather for allowing removal of air from the layup during curing.

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28-03-2013 дата публикации

METHOD OF RECYCLING AIR CONTAINING A STERILIZING AGENT, AND CONTAINER MANUFACTURING PLANT COMPRISING AN AIR RECYCLING CIRCUIT

Номер: US20130078327A1
Автор: Adriansens Eric
Принадлежит: SIDEL PARTICIPATIONS

A container manufacturing plant () includes an air circuit () employing a recycling method that includes at least the successive steps of: extracting filtered air from an oven (), after the air has been used in the latter, for the purpose of cooling at least one part of the preforms; treating the sterilizing agent present in the extracted air resulting from the sterilization of the preforms; and recycling the extracted and treated air to the industrial area () where the plant () is installed. An air recycling method is also described. 1101214182010161020. An installation () for manufacturing containers () from a preform () made of thermoplastic material , comprising at least one protection chamber () intended to isolate an internal volume () of the installation () from the ambient air contained in industrial premises () where the installation () is located and comprising , arranged in said internal volume () , at least:{'b': 22', '14, 'a device () for decontaminating the preforms () by the application of at least one sterilizing agent,'}{'b': 14', '26', '30', '34', '36', '32', '14, 'a thermal conditioning unit for the preforms () consisting of an oven () comprising heating means () associated with an air cooling device () which comprises means () for filtering the ambient air and ventilation means () specifically for ensuring a cooling of at least a part of the preforms ();'}{'b': 38', '14', '12, 'a unit () for transforming the preforms () into containers (),'}{'b': 54', '20', '16', '56, 'and comprising an extraction system () suitable for extracting, from the internal volume () of the chamber, air charged with sterilizing agent to evacuate it into the atmosphere, outside the industrial premises (), via at least one exhaust duct (),'}{'b': 10', '78', '80', '54', '16', '10, 'characterized in that the installation () comprises an air recycling circuit () comprising treatment means () suitable for eliminating all or part of the sterilizing agent from at least a part of ...

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18-04-2013 дата публикации

Riser floatation with anti-vibration strakes

Номер: US20130095712A1
Принадлежит: Individual

A substantially cylindrical buoyancy module for a marine riser includes a plurality of buoyancy elements separated along at least one helical separation plane.

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02-05-2013 дата публикации

Method of Releasing High Temperature Films and/or Devices From Metallic Substrates

Номер: US20130108501A1
Принадлежит: Dow Corning Corp

Films and electronic devices can be released from metallic substrates by: (i) applying a coating of a polysilsesquioxane resin to a metallic substrate, (ii) heating the coated metallic substrate to a temperature sufficient to cure the polysilsesquioxane resin, (iii) applying a polymeric film to the cured coating on the metallic substrate, (iv) further heating the coated metallic substrate to a temperature sufficient to cure the polymeric film, (v) optionally fabricating electronic devices on the polymeric film, and (vi) releasing the polymeric film from the metallic substrate.

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02-05-2013 дата публикации

Methods and systems for the preparation of molded plastic articles having a structural barrier layer

Номер: US20130108834A1
Автор: Matthew Sweetland
Принадлежит: Kortec Inc

Disclosed herein are methods and systems for the preparation of a co-injection molded multilayer plastic article. Some methods include co-extruding a combined polymeric stream having an interior core stream encased by an inner stream and an outer stream. A volumetric ratio of the inner stream to outer stream is adjusted during injection of the combined stream into the a mold cavity to alter a streamline along which the interior core stream flows thereby forming cohesion member that structurally interlocks the interior layer with the inner layer, with the outer layer or with both. Some embodiments reduce or eliminate a need for addition of an adhesive in the composite stream to prevent delamination of layers of the resulting multilayer plastic article. In some embodiments, cohesion members may be employed to produce a desired cosmetic effect in a resulting article.

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09-05-2013 дата публикации

Tubular Composite Strut Having Internal Stiffening and Method for Making the Same

Номер: US20130112309A1
Автор: Samuel Ray Stewart
Принадлежит: Boeing Co

A strut comprises a substantially hollow composite tube. A fitting on each end of the tube adapts the strut for attachment to a structure. The tube is stiffened by at least one pair of opposing stiffeners.

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23-05-2013 дата публикации

Expandable Surface Breather and Method

Номер: US20130126386A1
Автор: Kenneth Marvin Dull
Принадлежит: Boeing Co

A breather for use in vacuum bag processing a composite part comprises a sheet of permeable material having at least one slit therein.

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20-06-2013 дата публикации

Authentication of articles

Номер: US20130155421A1
Принадлежит: Individual

The present invention provides a method of authenticating the provenance of an article marked with a transparent polymer film comprising measuring the thickness of the film or of a layer within in the film by white light interferometry and/or by birefringence.

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27-06-2013 дата публикации

AUTOCLAVE HEALTH MONITORING AND CONTROL SYSTEM

Номер: US20130161850A1
Принадлежит: SPIRIT AEROSYSTEMS, INC.

A bladder monitoring apparatus and method for monitoring an inflatable bladder during curing of composite material in an autoclave. The bladder may be wrapped with composite material and have an impermeable membrane sealed around the composite material. The method may include the steps of fluidly coupling a vacuum port of the impermeable membrane with a vacuum source and fluidly coupling a vent of the bladder with a first port of a flow meter located outward of the autoclave. A second port of the flow meter may also be fluidly coupled with atmosphere within the autoclave. The method may then include evacuating air from within the impermeable membrane. If a flow above a threshold flow is detected by the flow meter, the leak in the bladder may be located and repaired or a valve of the flow meter between the first and second ports may be closed. 1. A method for monitoring an inflatable bladder during curing of a composite part , wherein an uncured composite material is positioned outward of the bladder and inward of an impermeable membrane:placing the bladder, uncured composite material, and impermeable membrane into an autoclave for curing the composite part;fluidly coupling a vacuum port of the impermeable membrane with a vacuum source;fluidly coupling a vent of the bladder with a first port of a flow meter, wherein a second port of the flow meter is fluidly coupled with atmosphere within the autoclave;pulling vacuum via the vacuum source, thereby evacuating air from within the impermeable membrane;monitoring the flow meter to detect when a flow above a threshold flow is flowing through the flow meter; locating a leak in the bladder and repairing the leak, and', 'closing a valve of the flow meter such that no flow can enter the bladder via the vent., 'performing one of the following steps when the flow above the threshold flow amount is detected through the flow meter2. The method of claim 1 , wherein the flow meter is located outward of the autoclave and is fluidly ...

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27-06-2013 дата публикации

Moulding Chamber Arrangement for a Mould-String Plant

Номер: US20130161862A1
Принадлежит: DISA Industries A/S

Moulding chamber arrangement () for a mould-string plant comprising a moulding chamber () formed by a chamber bottom (), a chamber ceiling () provided with one or more sand filling openings () communicating with a sand-feed system (), two chamber side walls (), a pressure plate () provided with an exchangeable pressure pattern plate having a pressure pattern () and being connected to a movement mechanism (), a swingable plate () provided with an exchangeable swing pattern plate having a swing pattern () and being mounted for translational and swinging movement in order to open and close the moulding chamber (), allowing the pressure plate () to expel the produced moulds, and further comprising means () for vertically moving the chamber ceiling () and sand-feed system () in unison, or the chamber bottom (), or both, relative to the remainder of the moulding chamber arrangement (), thereby changing the height of the moulding chamber. By this arrangement, the flexibility of the size of the produced moulds, especially the heights of the produced moulds, can be adjusted without changing the geometry of the sand feed system above the moulding chamber in a time-saving manner. 1. Moulding chamber arrangement for a mould-string plant comprising: a chamber bottom,', 'a chamber ceiling provided with one or more sand filling openings communicating with a sand feed system,', 'two chamber side walls,', 'a pressure plate provided with an exchangeable pressure pattern plate having a pressure pattern and being connected to a movement mechanism,, 'a moulding chamber formed by'}a swingable plate provided with an exchangeable swing pattern plate having a swing pattern and being mounted for translational and swinging movement in order to open and close the moulding chamber, allowing the pressure plate to expel the produced moulds,means for changing the horizontal extension of the moulding chamber in the direction between the two chamber side walls,characterised by further ...

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04-07-2013 дата публикации

Contact lenses with identifying mark

Номер: US20130168884A1
Принадлежит: NOVARTIS AG

The present invention is related to a method for making contact lenses with identifying mark, in particular to silicone hydrogel contact lenses. The present invention is also related to a method of high intensity UV curing the identifying mark print on the mold and high intensity UV treating mold for making silicone hydrogel contact lenses with identifying mark.

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08-08-2013 дата публикации

Image forming optical system, imaging apparatus, profile measuring apparatus, structure manufacturing system and structure manufacturing method

Номер: US20130202727A1
Принадлежит: Nikon Corp, NIKON METROLOGY NV

There is provided a measuring apparatus including: an imaging optical system configured to form an image of an object to be measured; and an imaging section including a transmissive member which is arranged in the vicinity of an image plane of the imaging optical system to be inclined with respect an optical axis of the imaging optical system. The imaging optical system includes a first optical member which is non-coaxial with respect to the optical axis.

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29-08-2013 дата публикации

Plastic injection mould with inner air extraction and extraction method for extracting the air carried out with said mould

Номер: US20130221574A1
Принадлежит: Comercial de Utiles y Moldes SA

A plastic injection mold which allows extracting the air from inside it during the injection process, and an extraction method, where the mold includes closing means, one or more injection cavities provided with at least one injection nozzle for introducing the hot material in a liquid state and at least one ejector device formed by a housing for an ejector pin responsible for extracting the part already molded, where an air duct connected to a vacuum pump or a suction device intercepts the housings of the ejector pins causing a suction of the air from inside the mold.

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05-09-2013 дата публикации

Siloxane-based composition which is intended for tire molding/stripping

Номер: US20130228259A1
Автор: Stefan Breunig
Принадлежит: BLUESTAR SILICONES FRANCE SAS

The invention relates to compositions in the form of silicone oil emulsions which are intended to be applied to curing bladders as a mold-release agent during tire production.

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19-09-2013 дата публикации

Method for Producing Patterned Materials

Номер: US20130241107A1
Принадлежит: Liquidia Technologies Inc

A large area patterned film includes a first patterned area; a second patterned area; and a seam joining the first patterned area and the second patterned area, wherein the seam has a width less than about 20 micrometers. A method for tiling patterned areas includes depositing a predetermined thickness of a curable material; contacting a first portion of the curable material with a mold; curing the first portion of the curable material; removing the mold from the cured first portion of the curable material; contacting a second portion of the curable material with the mold, such that the mold contacts a portion of the cured first portion of the curable material; curing the second portion of the curable material; and removing the mold to yield a seam between the cured first portion of the curable material and the cured second portion of the curable material, wherein the seam has a dimension less than about 20 micrometers.

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26-09-2013 дата публикации

Molding in airbag door features in a vehicle interior panel using a movable mold member

Номер: US20130249195A1
Автор: Reinhold Hagl
Принадлежит: Faurecia Interior Systems Inc

A method of making a vehicle interior panel substrate with a reduced thickness portion along a boundary of an airbag door includes molding the substrate using a substrate mold that includes a movable mold member. The movable mold member is part of a mold section and moves with respect to other portions of the mold section during the molding process to form the reduced thickness portion, which may include a hinge or a tear seam. The mold member moves after plastic material is introduced into the mold cavity. The plastic material is allowed to expand when substrate mold sections are moved away from each other. Plastic material expansion may be part of a structural gas injection (SGI) process. A scrim material or other hinge reinforcement may be molded into the substrate.

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26-09-2013 дата публикации

Tamper resistant dosage forms

Номер: US20130251801A1
Принадлежит: Purdue Pharma LP

The present invention relates to pharmaceutical dosage forms, for example to a tamper resistant dosage form including an opioid analgesic, and processes of manufacture, uses, and methods of treatment thereof.

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03-10-2013 дата публикации

Method of making articles with super-hydrophobic and/or self-cleaning surfaces

Номер: US20130256944A1
Принадлежит: Integran Technologies Inc

Super-hydrophobic and self-cleaning articles produced by imprinting exposed surfaces with suitable fine-grained and/or amorphous metallic embossing dies to transfer a dual surface structure, including ultra-fine features less than or equal to 100 nm embedded in and overlaying a surface topography with macro-surface structures greater than or equal to 1 micron are disclosed.

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03-10-2013 дата публикации

Tamper resistant dosage forms

Номер: US20130259938A1
Принадлежит: Purdue Pharma LP

The present invention relates to pharmaceutical dosage forms, for example to a tamper resistant dosage form including an opioid analgesic, and processes of manufacture, uses, and methods of treatment thereof.

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17-10-2013 дата публикации

Method for manufacturing a polymer-molded material using a mold which easily forms a 3-dimensional surface pattern, and molded material for a home appliance having the 3-dimensional surface pattern

Номер: US20130273332A1
Принадлежит: LG HAUSYS LTD

A method for manufacturing a polymer-molded material which can easily form a three-dimensional surface shape and minimize deformation includes: (a) preparing a lower mold on which a three-dimensional pattern, for imparting a surface shape of the molded material to a surface to be formed, is formed; (b) coupling a gasket on an edge of the formed surface of the lower mold; (c) coupling an upper mold including a raw material injection part to the gasket of the lower mold; (d) injecting a raw material of the polymer-molded material onto the formed surface of the lower mold through the raw material injection part of the upper mold; (e) heat-curing the raw material and transferring the three-dimensional pattern onto the formed surface of the lower mold; and (f) additionally heat-curing the raw material, which does not react in the step (e), through heat treatment.

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21-11-2013 дата публикации

Support Structures and Deposition Techniques for 3D Printing

Номер: US20130307193A1
Принадлежит: 3D Systems Inc

There is provided a support structure for use with 3D printing of objects from computer-aided designs. The support structures include fine points that contact the down-facing surfaces of the 3D object being printed in order to adequately support the 3D object while also being adapted for easy removal after the 3D print process is complete. The fine points are possible by controlling the operation of the dispenser to provide a precise amount of material in a precise location. The dispenser jumps from a first fine point to a second fine point by retracting the print material after the first fine point is printed and then moving the dispenser vertically relative to the first fine point before the dispenser is moved horizontally to the second fine point.

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16-01-2014 дата публикации

WORKPIECE REMOVAL AND FINISHING DEVICE

Номер: US20140017352A1
Принадлежит: Nihon Shoryoku Kikai Co., Ltd.

There is provided a workpiece removal and finishing device that can easily, accurately, continuously and quickly perform a series of works for processing a workpiece of resin removed from a molding machine. The workpiece removal and finishing device for processing the workpiece of resin removed from the molding machine has a workpiece removal robot for directly or indirectly removing the workpiece from molds , and a processing robot for processing the workpiece. A processing tool which can profile the workpiece is secured to the arm tip of the processing robot through a floating mechanism to be adaptable to thermal contraction of the workpiece, and the workpiece can processed by the profiling-capable processing tool provided to the arm tip A of the processing robot while the workpiece removed by the workpiece removal robot is positioned and held by the workpiece removal robot 16-. (canceled)7. A workpiece removal and finishing device that processes a workpiece of resin removed from a molding machine , comprising:a workpiece removal robot that directly or indirectly removes the workpiece from the molding machine; anda processing robot that processes the workpiece, whereinthe processing robot processes the workpiece while the workpiece removal robot changes a processing position of the workpiece,a processing tool that is capable of profiling the workpiece is secured to an arm tip of the processing robot through a floating mechanism so as to be adaptable to thermal contraction of the workpiece,the workpiece removal robot moves a processing face of the workpiece to the processing robot,the workpiece removal robot is sequentially subjected to attitude control so that the workpiece is located at a position where the processing robot can easily process the workpiece, andthe workpiece can be processed by the processing tool which is provided to the arm tip of the processing robot to be capable of profiling while the workpiece removed by the workpiece removal robot is ...

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23-01-2014 дата публикации

Machine for cutting object and sticking film

Номер: US20140020843A1

A machine for cutting off a redundant part of a workpiece and affixing film to a top surface of the workpiece includes a stand, a cutting device, and an affixing device. The stand has a work platform. The workpieces slide on the work platform. The cutting device includes a first blade. The film provider dispenses the film. The affixing device has a pressing portion facing the work platform. The workpiece slides to the cutting device and the affixing device. The film is unwound and passes over the pressing portion. The cutting device cuts off the redundant parts of the workpiece when the workpiece slides under the cutting device, and the pressing portion presses the film onto the top surface of the workpiece when the workpiece slides under the affixing device.

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20-02-2014 дата публикации

Method of Manufacturing a Seal of a Vacuum Bag for an Infusion Molding Process

Номер: US20140048205A1
Автор: Balas Salvador Chava
Принадлежит:

A method is disclosed for forming a seal on a vacuum bag used in an infusion molding process. A seal profile having a first part and a second part is attached to a supporting surface and resin is applied to the seal profile to form a mold layer. The mold layer and the seal profile are separated from the supporting surface. The second part of the seal profile is separated from the first part of the seal profile. A silicone resin is applied to the mold layer and the first part of the seal profile to form the seal and the vacuum bag. A vacuum cavity is created between the mold layer and the second resin when the second resin is applied to the first part of the seal profile. 1. A method of forming a seal on a vacuum bag used in an infusion molding process , the method comprising:securing a seal profile having a first part and a second part to a supporting surface;applying a first resin to the seal profile to form a mold layer;removing the mold layer and the seal profile from the supporting surface;separating the second part of the seal profile from the first part of the seal profile; andapplying a second resin to the mold layer and the first part of the seal profile to form the seal on the vacuum bag.2. The method of wherein the first part of the seal profile is secured to the second part of the seal profile with a key and keyway connector.3. The method of wherein the supporting surface is part of a plug flange claim 1 , and wherein the step of securing the seal profile to the supporting surface is performed by inserting a segment of double face tape between the seal profile and the plug flange.4. The method of further comprising the step of inverting the mold layer after separating the mold layer and the seal profile from the supporting surface to expose a surface of the mold layer and the first part of the seal profile for application of the second resin.5. The method of wherein during the step of applying the second resin the first part of the seal profile results in ...

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20-02-2014 дата публикации

DEPOSITION TOOL WITH INTERCHANGEABLE MATERIAL BAY

Номер: US20140050811A1
Принадлежит:

Technologies are provided herein for a modular deposition tool design that allows for both, the fast interchanging of materials and for easy cleaning of all wetted surfaces. A drive assembly for use in a solid freeform fabrication system, includes a drive module having a drive mechanism and a detachable material bay assembly that is detachable from the drive module. The material bay assembly includes a material bay holder, a material deposition tool, and a corresponding material bay actuation mechanism that can engage with the drive mechanism of the drive module when the material bay assembly is coupled to the drive module such that when the drive mechanism of the drive module is actuated, the material bay actuation mechanism is actuated, which causes the material deposition tool to deposit material from a material bay inserted in the material bay holder. 1. A drive assembly for use in a solid freeform fabrication system , comprising:a drive module comprising a drive mechanism; anda detachable material bay assembly detachable from the drive module, the material bay assembly comprising a material bay holder, a material deposition tool, and a corresponding material bay actuation mechanism configured to engage with the drive mechanism of the drive module when the material bay assembly is coupled to the drive module such that when the drive mechanism of the drive module is actuated, the material bay actuation mechanism is actuated causing the material deposition tool to deposit material from a material bay inserted in the material bay holder.2. The drive assembly of claim 1 , wherein the material bay holder is configured to hold a material bay containing material.3. The drive assembly of claim 1 , wherein the material bay assembly comprises a material bay frame having at least one coupling interface.4. The drive assembly of claim 3 , wherein the drive module comprises a drive module frame having at least one attachment interface configured to engage with the at least ...

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20-02-2014 дата публикации

Edge Seal on a Vacuum Bag Used in an Infusion Molding Process

Номер: US20140050813A1
Автор: Salvador Chava Balas
Принадлежит: Individual

A seal is provided on a vacuum bag used in an infusion molding process. The seal is a truncated V-shape that has convergent walls and a distal end that defines a vacuum channel in conjunction with an infusion mold.

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20-02-2014 дата публикации

Highly insulating film

Номер: US20140050913A1
Принадлежит: Teijin Ltd

An object of this invention is to provide a highly insulating film, which is excellent in the heat resistance and has increased breakdown voltage. This invention is a highly insulating film, which is characterized by comprising a biaxially stretched film containing a styrene polymer having a syndiotactic structure as a main component, containing a thermoplastic amorphous resin Y having a glass transition temperature Tg by DSC of 130° C. or higher in an amount of 5% by mass or more and 48% by mass or less, and having a plane orientation coefficient (ΔP) represented by the following equation (1) of −0.027 or less. ΔP=(Nx+Ny)/2−Nz (1) (Here, in the equation (1), Nx represents the minimum value of the refractive index in the plane direction of the film, Ny represents the refractive index in the direction perpendicular to Nx in the plane direction of the film, and Nz represents the refractive index in the thickness direction of the film.)

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20-02-2014 дата публикации

Composite tubeshaft to metallic interface

Номер: US20140051524A1
Принадлежит: GKN Driveline North America Inc

A composite tubeshaft comprising a composite substrate defined by a first surface and a second surface; and a metallic substrate having at least two teeth. The teeth of the metallic substrate engage the composite substrate such that at least one tooth is positioned over the first surface and at least one tooth is positioned over the second surface.

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27-02-2014 дата публикации

Facility and method for manufacturing a rotor blade of a wind turbine and method for setting up the facility

Номер: US20140054811A1
Автор: Karsten Schibsbye
Принадлежит: SIEMENS AG

A facility for manufacturing a rotor blade of a wind turbine is provided. The facility includes an injection machine for injecting an injection material into a mould to form the rotor blade, a movable tank system for accommodating precursor material to be supplied to the injection machine for preparing the injection material, wherein the movable tank system has wheels for moving the tank system. Further, a method for setting up a facility and a method for manufacturing a rotor blade are described.

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27-02-2014 дата публикации

INSERT MOLDING METHOD AND ARTICLE FORMED BY SAME

Номер: US20140054824A1
Автор: LIU ZHI-HUA
Принадлежит:

An insert molding method includes providing a mold and a pin, and predetermining a mold releasing direction of the mold. The pin includes a latching portion. A preform and a depressed portion of a mold releasing hole in the preform are formed via the mold and the pin. The depressed portion is formed at an end of the preform along the mold releasing direction. The pin passes through the depressed portion and is partly received in the preform. The pin is released to release the preform from the mold, and the latching portion resists and drags along inner surface in the mold releasing hole in the preform along the mold releasing direction. A plurality of burrs is produced and received in the depressed portion. The preform is cooled to form an article. 1. An insert molding method , comprising following steps:providing a mold and a pin mounted on the mold, a mold releasing direction of the mold being predetermined, the pin comprising a latching portion and an engaging portion, the latching portion formed at an end of the engaging portion along the mold releasing direction;forming a preform by the mold and the pin, a mold releasing hole defined in the preform, an inner wall of the molding releasing hole comprising a receiving portion and a depressed portion at an end of the receiving portion along the mold releasing direction, the receiving portion formed corresponding to the latching portion, the depressed portion formed corresponding to the engaging portion;opening the mold, releasing the preform from the mold, and cooling down the preform to obtain an article, pulling the preform along the mold releasing direction using the pin, resisting and dragging the inner surface of the mold releasing hole along the mold releasing direction by the latching portion, producing a plurality of burrs received in the depressed portion.2. The insert molding method of claim 1 , wherein the engaging portion comprises an engaging surface claim 1 , the engaging surface is inwardly sloped ...

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27-02-2014 дата публикации

DEVICE FOR APPLYING A COMPOSITION TO KERATINOUS FIBERS

Номер: US20140056636A1
Автор: Gueret Jean-Louis
Принадлежит: L'OREAL

A device for applying a cosmetic composition to keratinous fibers, for example the hair, the eyelashes, or the eyebrows, the device including: a support; and teeth that extend from the support; at least one tooth, or at least half of the teeth, including a longitudinal through slot that extends over a major fraction of the length of the tooth, the slot not opening out at a free end of the tooth, remote from the support. 1. (canceled)2. A device for applying a cosmetic composition to keratinous fibers , or to hair , eyelashes , or eyebrows , the device comprising:a support; andteeth that extend from the support;at least one tooth, or at least half of the teeth, including a longitudinal through slot that extends over a major fraction of the length of the tooth, the slot not opening out at a free end of the tooth, remote from the support.3. A device according to claim 2 , wherein the slot defines inside faces of the tooth that are plane claim 2 , convex claim 2 , or concave.4. A device according to claim 2 , wherein the slot has a width claim 2 , measured between inside faces of the tooth claim 2 , lying in a range of 0.1 mm to 3 mm.5. A device according to claim 2 , wherein the slot has a width claim 2 , measured between inside faces of the tooth claim 2 , that is constant along a long axis of the tooth claim 2 , over at least half of the length of the slot.6. A device according to claim 2 , wherein the slot has a width claim 2 , measured between inside faces of the tooth claim 2 , that varies along a long axis of the tooth.7. A device according to claim 2 , each of the teeth extending along a long axis of the tooth claim 2 , the long axes of two successive teeth being separated by a pitch lying in a range of 0.3 mm to 3 mm.8. A device according to claim 2 , spacing between two successive teeth claim 2 , measured at a base of the teeth at a surface of the support claim 2 , between closest-together points of the bases of the teeth claim 2 , lies in a range of 0.3 mm to ...

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27-03-2014 дата публикации

Lineally Adjustable Molds, Molding Methods, And Products Therefrom

Номер: US20140086673A1
Принадлежит: Andersen Corporation

A mold for producing a variety of fenestration members having different predetermined lengths is disclosed. Generally, the mold has a first lineal mold part that has an extended length and a second lineal mold part also having an extended length. The mold may also have mold end parts that are adapted to form end features of the fenestration member. In use, the first lineal mold part and the second lineal mold part fit together to define a profile. The first and second mold end parts can be positioned in a range of positions to define the lengths of a variety of different molded fenestration members. 1. A method for molding a variety of fenestration members having different predetermined lengths comprising the steps of:providing a mold comprising:a first lineal profile mold part having an extended length;a second lineal profile mold part having an extended length;a first mold end part adapted to form a first end feature of the member, and the first lineal profile mold part and the second lineal mold part fit together to define a lineal profile, and', 'at least one of the first mold end part and the second mold end part can be positioned in a range of positions along the first lineal mold part and the second lineal mold part to define the lengths of a variety of molded fenestration members;', 'assembling the mold parts into a closed mold defining a molded shape;', 'filling the mold with a reaction injection molding material;', 'allowing the molding material to at least partially cure; and', 'opening the mold and removing the molded member., 'a second mold end part adapted to form a second end feature of the member, wherein'}2. The method of further comprising the step of removing mold end parts from the molded member.3. The method of wherein the reaction injection molding material further comprises a foaming agent.4. The method of further comprising the step of painting selected portions of the mold parts prior to assembly.5. The method of comprising the further step ...

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05-01-2017 дата публикации

Methods Of Manufacturing An Electrified Deterrent Device Having An Insulative Layer

Номер: US20170000107A1
Автор: Donoho Bruce
Принадлежит:

Methods of manufacturing an electric deterrent device for birds or other pests are described that include extruding an elongated base having upper and lower surfaces, coupling first and second conductors to the elongated base, and coating at least a portion of the lower surface of the elongated base with a non-adhesive coating. The step of coating the elongated base can include coating at least part of the upper and/or lower surfaces. 1. A method of manufacturing an electric deterrent device , comprising:extruding an elongated base having upper and lower surfaces;coupling first and second conductors to the upper surface of the base; andcoating at least a portion of the lower surface of the base with a non-adhesive coating.2. The method of claim 1 , wherein the step of coupling the first and second conductors comprises sewing the first and second conductors to the upper surface of the base.3. The method of claim 1 , wherein the step of coupling the first and second conductors to the upper surface of the base comprises using a friction-fit to couple the first and second conductors to the upper surface of the base.4. The method of claim 1 , wherein the step of coupling the first and second conductors comprises thermally coupling the first and second conductors to the upper surface of the base.5. The method of claim 1 , wherein the step of coating at least the portion of the lower surface of the base comprises spraying the non-adhesive coating on at least the portion of the lower surface of the base.6. The method of claim 5 , wherein the step of spraying the non-adhesive coating comprises spraying the non-adhesive coating on the lower surface of the base to form a layer on the lower surface of the base.7. The method of claim 6 , further comprising spraying the non-adhesive coating on at least a portion of the upper surface of the base.8. The method of claim 5 , wherein the step of spraying the non-adhesive coating comprises spraying the non-adhesive coating on the upper ...

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05-01-2017 дата публикации

Jewelry displaying cremation ashes in a transparent or translucent resin setting and method of making same

Номер: US20170000224A1
Автор: Gina Murphy
Принадлежит: Individual

A method including the selection of a piece of jewelry with a setting, and inserting a mixture of transparent resin and cremation ashes in the setting.

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07-01-2021 дата публикации

TAMPER RESISTANT DOSAGE FORMS

Номер: US20210000747A1
Принадлежит:

The present invention relates to pharmaceutical dosage forms, for example to a tamper resistant dosage form including an opioid analgesic, and processes of manufacture, uses, and methods of treatment thereof. 1169-. (canceled)170. A process of preparing a solid oral extended release pharmaceutical dosage form , comprising the steps of:(a) combining (1) at least one polyethylene oxide (PEO) having, based on rheological measurements, an approximate molecular weight of at least 800,000, and (2) at least one opioid analgesic, to form a composition;(b) shaping the composition to form an extended release matrix formulation;(c) subsequently heating said extended release matrix formulation by subjecting the extended release matrix formulation to an elevated temperature that is at least the softening temperature of said PEO for a time period of at least about 1 minute; and(d) cooling the heated extended release matrix formulation.171. The process of claim 170 , wherein said time period is at least about 15 minutes.172. The process of claim 170 , wherein said elevated temperature is at least about 55° C.173. The process of claim 170 , wherein said elevated temperature is at least about 62° C.174. The process of claim 170 , wherein the total PEO content of the shaped composition is at least about 15% (by weight) of the shaped composition.175. The process of claim 170 , wherein the total PEO content of the shaped composition is at least about 30% (by weight) of the shaped composition.176. The process of claim 170 , wherein the total PEO content of the shaped composition is at least about 50% (by weight) of the shaped composition.177. The process of claim 170 , wherein the extended release matrix is shaped by direct compression to form a tablet.178. The process of claim 170 , wherein said cooling is at a temperature below 50° C.179. The process of claim 170 , wherein the extended release matrix is shaped to form a tablet; the heating step takes place in a coating pan; said time ...

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07-01-2021 дата публикации

TAMPER RESISTANT DOSAGE FORMS

Номер: US20210000748A1
Принадлежит:

The present invention relates to pharmaceutical dosage forms, for example to a tamper resistant dosage form including an opioid analgesic, and processes of manufacture, uses, and methods of treatment thereof. 1169-. (canceled)170. A solid oral extended release pharmaceutical dosage form , comprising a shaped , heated , and cooled extended release matrix , said matrix comprising at least one polyethylene oxide (PEO) having , based on rheological measurements , an approximate molecular weight of at least 800 ,000 , and at least one opioid analgesic , wherein the shaped matrix is heated to an elevated temperature that is at least the softening temperature of said PEO for a time period of at least about 1 minute and thereafter cooled.171. The dosage form of claim 170 , wherein said time period is at least about 15 minutes.172. The dosage form of claim 170 , wherein said elevated temperature is at least about 55° C.173. The dosage form of claim 170 , wherein said elevated temperature is at least about 62° C.174. The dosage form of claim 170 , wherein the total PEO content of the shaped matrix is at least about 15% (by weight) of said matrix.175. The dosage form of claim 170 , wherein the total PEO content of the shaped matrix is at least about 30% (by weight) of said matrix.176. The dosage form of claim 170 , wherein the total PEO content of the shaped matrix is at least about 50% (by weight) of said matrix.177. The dosage form of claim 170 , wherein the extended release matrix is shaped by direct compression to form a tablet.178. The dosage form of claim 170 , wherein said cooling is at a temperature of below 50° C.179. The dosage form of claim 170 , wherein the extended release matrix is shaped to form a tablet and heated in a coating pan; said time period is at least about 5 minutes; and said elevated temperature is at least about 60° C.180. The dosage form of claim 179 , wherein the opioid analgesic is oxycodone or a pharmaceutically acceptable salt thereof.181. The ...

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07-01-2021 дата публикации

TAMPER RESISTANT DOSAGE FORMS

Номер: US20210000749A1
Принадлежит:

The present invention relates to pharmaceutical dosage forms, for example to a tamper resistant dosage form including an opioid analgesic, and processes of manufacture, uses, and methods of treatment thereof. 1169-. (canceled)170. A method of treating pain comprising administering to a patient in need thereof a solid oral extended release pharmaceutical dosage form , comprising a shaped , heated , and cooled extended release matrix , said matrix comprising at least one polyethylene oxide (PEO) having , based on rheological measurements , an approximate molecular weight of at least 800 ,000 , and at least one opioid analgesic , wherein the shaped matrix is heated to an elevated temperature which is at least the softening temperature of said PEO for a time period of at least about 1 minute and thereafter cooled.171. The method of claim 170 , wherein said time period is at least about 15 minutes.172. The method of claim 170 , wherein said elevated temperature is at least about 55° C.173. The method of claim 170 , wherein said elevated temperature is at least about 62° C.174. The method of claim 170 , wherein the total PEO content of the shaped matrix is at least about 15% (by weight) of said matrix.175. The method of claim 170 , wherein the total PEO content of the shaped matrix is at least about 30% (by weight) of said matrix.176. The method of claim 170 , wherein the total PEO content of the shaped matrix is at least about 50% (by weight) of said matrix.177. The method of claim 170 , wherein the extended release matrix is shaped by direct compression to form a tablet.178. The method of claim 170 , wherein said cooling is at a temperature below 50° C.179. The method of claim 170 , wherein the extended release matrix is shaped to form a tablet and heated in a coating pan; said time period is at least about 5 minutes; and said elevated temperature is at least about 60° C.180. The method of claim 179 , wherein the opioid analgesic is oxycodone or a pharmaceutically ...

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03-01-2019 дата публикации

TAMPER RESISTANT DOSAGE FORMS

Номер: US20190000767A1
Принадлежит:

The present invention relates to pharmaceutical dosage forms, for example to a tamper resistant dosage form including an opioid analgesic, and processes of manufacture, uses, and methods of treatment thereof. 1. A process of preparing a solid oral extended release pharmaceutical dosage form , [ (1) at least one polyethylene oxide having, based on rheological measurements, an approximate molecular weight of at least 1,000,000, and', '(2) at least one active agent,', 'to form a composition;, '(a) combining at least'}, '(b) shaping the composition to form an extended release matrix formulation; and', '(c) curing said extended release matrix formulation comprising at least a curing step of subjecting the extended release matrix formulation to a temperature which is at least the softening temperature of said polyethylene oxide for a time period of at least about 1 minute., 'comprising at least the steps of2. The process of claim 1 , wherein in step c) the extended release matrix formulation is subjected to a temperature which is at least the softening temperature of said polyethylene oxide for a time period of at least about 5 minutes.3. The process of claim 1 , wherein in step c) the extended release matrix formulation is subjected to a temperature which is at least the softening temperature of said polyethylene oxide for a time period of at least about 15 minutes.4. The process of claim 1 , or claim 1 , wherein in step b) the composition is shaped to form an extended release matrix formulation in the form of tablet.5. The process of claim 4 , wherein in step b) the composition is shaped by direct compression of said composition.6. The process of any one of to claim 4 , wherein in step c) the extended release matrix formulation is subjected to a temperature of at least about 60° C. or at least about 62° C. preferably at least about 68° C. claim 4 , at least about 70° C. claim 4 , at least about 72° C. or at least about 75° C.7. The process of claim 6 , wherein the ...

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02-01-2020 дата публикации

Solid Oral Pharmaceutical Compositions for Isoxazoline Compounds

Номер: US20200000718A1
Принадлежит: Intervet Inc.

A solid oral pharmaceutical composition for delivery of a pharmaceutically acceptable active ingredient to an animal where the composition comprises an isoxazoline compound, a solvent and an excipient, a process for the manufacture of such solid oral pharmaceutical composition and a method of controlling a parasite infection administering such solid oral pharmaceutical composition. 2. The solid oral pharmaceutical composition of wherein the composition is prepared by a method comprisinga. dissolving the isoxazoline compound of formula (I) in a solvent to form an isooxazoline solution;b. adding the isoxazoline solution to a solid carrier and mix to form a first mixture;c. adding all other dry excipients to the first mixture and mix to form a second mixture;d. adding liquid ingredients, qlycerol and soybean oil, to the second dry mixture;e. mixing to form wet mass;f. melting a polyethylene glycol forming agent and adding to the wet mass;g. mixing to form the final bulk mass; andh. forming soft chewable tablets in a forming machine.3. The solid oral pharmaceutical composition of wherein the solid carrier is microcrystalline cellulose.4. The solid oral pharmaceutical composition of wherein the solvent is selected from 2-pyrrolidone claim 1 , dimethyl acetamide or mixtures thereof.5. The solid oral pharmaceutical composition of wherein the solvent is dimethyl acetamide.6. (canceled)7. The solid oral pharmaceutical composition of wherein the isoxazoline compound is fluralaner.8. The solid oral pharmaceutical composition of wherein the isoxazoline compound is 4-[5-(3 claim 1 ,5-dichlorophenyl)-4 claim 1 ,5-dihydro-5-(trifluoromethyl)-3-isoxazolyl]-N—[(Z)-(methoxyimino)methyl]-2-methyl-benzamide.9. The solid oral pharmaceutical composition of wherein the isoxazoline compound is afoxolaner.10. The solid oral pharmaceutical composition of wherein the isoxazoline compound is 5-[5-(3 claim 1 ,5-Dichlorophenyl)-4 claim 1 ,5-dihydro-5-(trifluoromethyl)-3-isoxazolyl]-3-methyl-N-[2 ...

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01-01-2015 дата публикации

IN-MOLD-DECORATION METHOD FOR MANUFACTURING COMPOUND MATERIAL ARTICLE

Номер: US20150001760A1
Принадлежит:

A method to manufacture a compound material article decorated with patterns includes providing a fiber cloth impregnated with resin, providing a carrier film with a pattern layer, placing the fiber cloth and the carrier film in a hot-press die, closing the hot-press die to adhere the carrier film to a side surface of the fiber cloth, cooling the hot-press die, and opening the hot-press die to release the carrier film from the fiber cloth. The pattern layer adheres to the side surface of the fiber cloth. 1. A method for forming a compound material article , comprising:providing a fiber cloth impregnated with resin;providing a carrier film with a pattern layer attached to one side of the carrier film;placing the fiber cloth into a hot-press die and transporting the carrier film into the hot-press die, with the pattern layer facing to the fiber cloth;closing the hot-press die to adhere the carrier film to a side surface of the fiber cloth;cooling the hot-press die; andopening the hot-press die to released the carrier film from the fiber cloth, with the pattern layer being attached on the side surface of the resin impregnated fiber cloth.2. The method of claim 1 , wherein the fiber cloth is selected from the group consisting of carbon fiber cloth impregnated with thermoplastic resin claim 1 , glass fiber cloth impregnated with thermoplastic resin claim 1 , and unidirectional ruled cloth impregnated with thermoplastic resin.3. The method of claim 1 , wherein the pattern layer is provided by printing ink on the carrier film.4. The method of claim 1 , wherein a metal decoration layer is provided as the pattern layer through plating any of aluminum claim 1 , chromium claim 1 , copper claim 1 , nickel claim 1 , indium claim 1 , and tin claim 1 , alone or in combination claim 1 , on the carrier film through vacuum evaporation method or electroplating method.5. The method of claim 1 , wherein a release layer is set between the carrier film and the pattern layer claim 1 , for ...

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07-01-2021 дата публикации

BONDING PROCESS AND SYSTEM

Номер: US20210001570A1
Принадлежит:

A system and process for bonding involves a pocket made into one article is used to secure that article to another using a flowable, curable material (e.g., resin) which during saturation enters through a passageway and at least partially fills the void. When the article is cured, the article is bonded to another article to which resin has also been applied since the void (now containing cured material) is larger than the passageway. 1. A system for securing a composite material to a substrate , the system comprising:an opening made into the substrate material, the opening transitioning into a void formed underneath a surface of the substrate material;the void having a lateral dimension that is greater than a dimension of the opening, thus creating a dimensional difference;a bond formed between the composite and substrate materials, the bond being formed of a cured product of a flowable, curable fluid, the bond being at least enhanced by a retaining force provided by the dimensional difference when the fluid is cured.2. The system of wherein the bond is primarily held to the composite material by adhesive strength claim 2 , and the bond is primarily held to the substrate material by the retaining force provided by the dimensional difference.3. The system of wherein the a cured product of a flowable claim 1 , curable fluid is comprised of a resin.4. The system of wherein the resin is a resin thermoset resin.5. The system of wherein the resin is a thermoplastic resin.6. The system of wherein the substrate material is a 3-D printed core.7. The system of wherein the void has a cross-sectional dimension larger than a dimension of the passageway such that the cured product is retained in the void the after being cured.8. The system of wherein the substrate is an aircraft part that is constructed through an additive manufacturing process.9. A fastening system comprising:a printed article, the printed article being configured to define a first passageway into a first ...

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07-01-2016 дата публикации

Apparatus Comprising an Increased-Capacity Platinumware Holder and Method Therefor

Номер: US20160003720A1
Принадлежит:

A platinumware holder includes a crucible holder in which the crucibles are laterally staggered and a mold rack in which the molds are vertically staggered. In some embodiments, the crucibles have a non-circular cross section. 1. An apparatus comprising a platinumware holder , wherein the platinumware holder comprises:a crucible holder that is physically adapted to receive a plurality of crucibles in a staggered arrangement defining two laterally offset rows of crucibles; anda mold rack that is physically adapted to receive a plurality of molds in a staggered arrangement defining two vertically offset rows of molds.2. The apparatus of wherein the crucible holder includes a base plate claim 1 , wherein the base plate comprises a plurality of openings for receiving the plurality of crucibles claim 1 , wherein adjacent openings are laterally offset.3. The apparatus of wherein the crucible holder is partially rotatable about a longitudinal axis thereof.4. The apparatus of wherein the crucible holder includes a single retaining beam claim 3 , wherein the retaining beam is arranged to prevent the plurality of crucibles from dislodging when the crucible holder is partially rotated.5. The apparatus of wherein the crucible holder comprises silicon nitride.6. The apparatus of wherein the mold rack comprises:a first plurality of standoffs that extend vertically to a first height for supporting some of the molds of the plurality thereof; anda second plurality of standoffs that extend vertically to a second height for supporting the molds not supported by the first plurality of standoffs, wherein the first height is greater than the second height, and wherein a difference between the first height and the second height defines a vertical offset of the two vertically offset rows of molds.7. The apparatus of wherein the two laterally offset rows include a back row of crucibles and a front row of crucibles claim 6 , wherein the back row falls along a first axis and the front row ...

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13-01-2022 дата публикации

Automated method for injection molding coated components

Номер: US20220009133A1
Принадлежит: BASF COATINGS GMBH

Described herein is an automatic or automated process for injection molding of coated components, more particularly coated soles of plastic, where first of all the molding tool is lined with a release agent composition and, after flashing of this release agent composition, a composition for forming the component is injected. After crosslinking of these two compositions, the coated component produced is removed from the molding tool and subjected optionally to an aftertreatment.

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03-01-2019 дата публикации

Strut comprising composite cylinder with a mid-strut fitting

Номер: US20190003522A1
Принадлежит: Crompton Technology Group Ltd

A strut comprises a composite cylinder with a mid-strut fitting mounted on an interface region on a mid-portion of said cylinder. At least in the interface region, layers of helical-filaments are displaced radially-outward and even inclined with respect to an axis of the cylinder such that they may follow a path with a radial component. A mid-strut fitting is provided which has a plurality of teeth on an inner circumferential surface. The plurality of teeth engage the helical-filaments in the interface region to provide a mechanical connection. Portions of surface and intermediate layers of the helical-filaments may be removed to expose ends of those filaments in the interface region before mounting the mid-strut fitting on the cylinder.

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14-01-2016 дата публикации

METHOD FOR MANUFACTURING TOUCH PANEL, TOUCH PANEL, METHOD FOR MANUFACTURING MOLDED ARTICLE, MOLDED ARTICLE, AND LAMINATED FILM

Номер: US20160009056A1
Принадлежит:

An object of the present invention is to provide a method for manufacturing a touch panel. A laminated film is used. The laminated film comprises a resin layer, a protection film-constituent material layer provided on a surface of the resin layer, and a releasing layer provided on a surface of the protection film-constituent material layer. The protection film-constituent material layer is a layer containing fluorine-based substances. The releasing layer is a layer made by using a fluorine-based resin. The method comprises a molding process, a hardening treatment process for providing hardening treatment to the protection film-constituent material layer after the molding process, and a removal process for removing the releasing layer after the molding process. The protection film-constituent material layer is an uncured layer in the course of a molding process. 1. A method for manufacturing a touch panel by molding a laminated film: a resin layer,', 'a protection film-constituent material layer provided on a surface of the resin layer, and', 'a releasing layer provided on a surface of the protection film-constituent material layer;, 'wherein the laminated film comprises'}wherein the resin layer, the protection film-constituent material layer, and the releasing layer are laminated together;wherein the protection film-constituent material layer is an uncured layer which is not completely cured, in the course of a molding process; a molding process,', 'a hardening treatment process for providing hardening treatment to the protection film-constituent material layer after the molding process and getting the protection film-constituent material layer modified to be a protection layer, and', 'a removal process for removing the releasing layer after the molding process;, 'wherein the method comprises'}wherein the protection film-constituent material layer is a layer containing fluorine-based substances; andwherein the releasing layer is a layer made by using a fluorine- ...

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10-01-2019 дата публикации

TRANSFERRING METHOD AND REPEATABLE TRANSFERRING METHOD

Номер: US20190009438A1
Автор: WEI Wei
Принадлежит: BOE Technology Group Co., Ltd.

The present disclosure provides a transferring method and a repeatable transferring method. The transferring method includes steps of: performing surface modification treatment on a transferring surface of a transfer mold to reduce surface free energy of the transferring surface; forming a liquid material layer on the transferring surface after the surface modification treatment; curing the liquid material layer to form a solid material layer; and releasing the solid material layer from the transfer mold. 1. A transferring method , comprising steps of:performing surface modification treatment on a transferring surface of a transfer mold to reduce surface free energy of the transferring surface;forming a liquid material layer on the transferring surface after the surface modification treatment;curing the liquid material layer to form a solid material layer; andreleasing the solid material layer from the transfer mold.2. The transferring method according to claim 1 , wherein the transfer mold is made of an organic material.3. The transferring method according to claim 2 , wherein the step of performing the surface modification treatment on the transferring surface of the transfer mold comprises irradiating the transferring surface of the transfer mold with a first ultraviolet (UV) ray.4. (canceled)5. The transferring method according to claim 3 , wherein the first UV ray has a power density of 60 W/cmto 500 W/cm claim 3 , and light energy of 800 mJ/cmto 5000 mJ/cm.6. (canceled)7. The transferring method according to claim 5 , wherein the first UV ray has a power density of 80 W/cmor 100 W/cm claim 5 , and light energy of 2800 mJ/cm claim 5 , 3000 mJ/cmor 3100 mJ/cm.8. The transferring method according to claim 1 , wherein the liquid material layer is a liquid claim 1 , UV-curable resin layer.9. (canceled)10. The transferring method according to claim 8 , wherein the step of curing the liquid material layer comprises irradiating the liquid claim 8 , UV-curable resin ...

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10-01-2019 дата публикации

FILM PRODUCTION METHOD, FILM PRODUCTION ASSEMBLY, AND PLASTIC FILM

Номер: US20190009447A1
Принадлежит:

The invention relates to a film production method for producing a thermally deformable plastic film having an at least two-color design, comprising the following steps: extruding a first plastic to form a molten plastic melt and dispensing the plastic melt of the first plastic in a planar manner in a first thickness by means of an extruder nozzle/slit nozzle; applying a second, scatterable and/or free-flowing plastic in a defined, planar manner in a defined pattern design with a pattern template onto the plastic melt consisting of the first plastic, and calendaring/sizing the thickness of the plastic melt and simultaneously at least partially pressing the second plastic applied in a planar manner in the pattern design into the first plastic by means of a calendar assembly, cooling the melt to form a solid plastic film. 1. A sheet production process for producing a thermally deformable plastic sheet having an at least two-color design , comprising the steps:extruding a first plastic material into a flowable plastic melt, and two-dimensionally dispensing the plastic melt of the first plastic material in a first thickness using an extruder die or slot die;applying a second scatterable and/or free-flowing plastic material in a defined two-dimensional way and in a defined pattern design using a pattern template to the plastic melt consisting of the first plastic material; andcalendaring or calibrating the thickness of the plastic melt and simultaneously at least partially impressing the second plastic material applied two-dimensionally and in a pattern design into the first plastic material by means of a calendar assembly;cooling the melt into a solid plastic sheet.2. The sheet production process according to claim 1 , characterized in that a differently colored first plastic material is used as said second plastic material.3. The sheet production process according to claim 1 , characterized in that said application of the second plastic material to the plastic melt ...

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09-01-2020 дата публикации

THERMAL EXTRUSION METHOD TO FABRICATE LARGE-DIMENSION SUPERHYDROPHOBIC CYLINDER PILLAR ARRAYS WITH DROPLET PANCAKE BOUNCING PHENOMENON

Номер: US20200009763A1
Принадлежит:

A thermal extrusion method to fabricate large-dimension superhydrophobic cylinder pillar arrays with droplet pancake bouncing phenomenon. Preparing thermal extrusion mold: the through-hole arrays with 0.8˜1.25 mm diameter, 0.25 mm interval space and 0.6˜1.0 mm height are first obtained on metals, and are then polished, rinsed and dried. Thermal extrusion: polymer materials are first thermally extruded on the obtained mold and cooled to room temperature. Demold: excess polymer materials flowing from the through hole are cut off and then the polymer cylinder pillar arrays are lifted off from the mold. Superhydrophobic treatment: the whole polymer sample is treated using mixed liquid spray consisting of titanium oxide nanoparticles dispersed in fluoroalkylsilane ethanol solution, and the superhydrophobic cylinder pillar arrays are obtained. The method is easy to operate, low-cost, recyclable, effective for different polymer materials, and can obtain cylinder pillar arrays with large dimensions, which can realize efficient large-area and industrial fabrication of the droplet pancake bouncing surfaces. 1. A thermal extrusion method to fabricate large-dimension superhydrophobic cylinder pillar arrays with droplet pancake bouncing phenomenon , wherein the steps are as follows:preparing thermal extrusion mold: the through-hole arrays with 0.8˜1.25 mm diameter, 0.25 mm interval space and 0.6˜1.0 mm depth are first obtained on metals, and then rinsed and dried;thermal extrusion: based on the obtained mold, the polymer plates are first thermally extruded on the mold and cooled to room temperature;demold: excess polymer materials flowing from the through hole are cut off and then the polymer cylinder pillar arrays are lifted off from the mold;superhydrophobic treatment: the superhydrophobic cylinder pillar arrays are obtained via spraying the mixed 1 wt. % fluoroalkylsilane ethanol solution containing titanium oxide nanoparticles and being dried in the air; The mass ratio of ...

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09-01-2020 дата публикации

STATION AND METHOD FOR CURING A TREAD STRIP

Номер: US20200009764A1
Принадлежит: BRIDGESTONE CORPORATION

Station () and method of curing for a tread strip (); provided are: a flat curing mold () which is composed of a lower shell () and an upper cover (); and an extractor element () which is suitable for extracting the cured tread strip () from the lower shell () after the curing operation; the cured tread strip () has a first wall (), which has a relief design and is in contact with the lower shell (), and a second wall () which is opposite the first wall (), and is in contact with the upper cover (); the extractor element () is suitable for adhering to the second wall () of the tread strip () along the entire length of the second wall () itself; and the extractor element () is movable perpendicularly with respect to the second wall () of the tread strip () in order to simultaneously raise the whole tread strip () from the lower shell (). 1727. Station () for the curing of a tread strip (); the curing station () comprises:{'b': 9', '10', '11', '9', '9, 'a flat curing mold () that has a parallelepiped shape and that is composed of a lower shell () and an upper cover () that are brought together in order to close the curing mold () and that are separated in order to open the curing mold (); and'}{'b': 17', '2', '10, 'an extractor element (), which is suitable for extracting the cured tread strip () from the lower shell () once the curing operation has been completed;'}{'b': 2', '13', '10', '14', '13', '11, 'wherein the cured tread strip () has a first wall (), which has a relief design and is in contact with the lower shell (), and a second wall (), which is smooth, is opposite the first wall () and is in contact with the upper cover ();'}{'b': 17', '14', '2', '14, 'wherein the extractor element () is suitable for adhering to the second wall () of the tread strip () along the entire length of the second wall () itself; and'}{'b': 17', '14', '2', '2', '10, 'the extractor element () moves perpendicularly with respect to the second wall () of the tread strip () in order to ...

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09-01-2020 дата публикации

Lining Element, and Process for Manufacturing a Lining Element

Номер: US20200010043A1
Автор: SCHWABL Martin
Принадлежит:

A lining element for use in a vehicle in order to cover an airbag includes a dimensionally stable backing layer with a first predetermined breaking region which is delimited from a surrounding region and/or from a second predetermined breaking region by at least one predetermined breaking line, where a plurality of regularly spaced predetermined breaking points are disposed along the predetermined breaking line. 1. A lining element for use on a vehicle for covering an air bag , comprising:a dimensionally stable backing layer with a first predetermined breaking region which is delimited from a surrounding region and/or from a second predetermined breaking region by at least one predetermined breaking line, wherein a plurality of regularly spaced predetermined breaking points are disposed along the predetermined breaking line.2. The lining element according to claim 1 , wherein the backing layer has a visible side and a rear side facing away from the visible side claim 1 , wherein a decorative layer is disposed flat on the backing layer on the visible side claim 1 , and wherein the plurality of regularly spaced predetermined breaking points are disposed on the visible side.3. The lining element according to claim 2 , wherein the decorative layer is leather.4. The lining element according to the claim 2 , wherein a first surface of the decorative layer directly above one of the plurality of regularly spaced predetermined breaking points disposed on the visible side forms a plane together with a second surface of the decorative layer claim 2 , wherein the second surface is directly adjacent to the first surface and completely surrounds the first surface such that the plurality of regularly spaced predetermined breaking points of the predetermined breaking line on the visible side cannot be seen by an observer.5. The lining element according to claim 2 , wherein the backing layer forms a welding rib on the rear side and wherein at least some of the plurality of regularly ...

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14-01-2016 дата публикации

POLYOLEFIN POROUS MEMBRANE, BATTERY SEPARATOR OBTAINED USING SAME, AND METHOD OF PRODUCING SAME

Номер: US20160013461A1
Принадлежит: Toray Battery Separator Film Co., Ltd.

A polyolefin porous membrane disclosed. The membrane includes a plurality of protrusions of polyolefin having a size (W) of 5 μm≦W≦50 μm and a height (H) of 0.5 μm≦H. The protrusions are disposed on one side of the polyolefin porous membrane with a density of at least 3/cmand at most 200/cm, and the polyolefin porous membrane has a thickness of at most 20 μm. A battery separator including the membrane is also disclosed. 1. A polyolefin porous membrane comprising:{'sup': 2', '2, 'a plurality of protrusions of polyolefin having a size (W) of 5 μm≦W≦50 μm and a height (H) of 0.5 μm≦H, wherein the protrusions are disposed on one side of the polyolefin porous membrane with a density of at least 3/cmand at most 200/cm, and wherein the polyolefin porous membrane has a thickness of at most 20 μm.'}2. A battery separator claim 1 , comprising the polyolefin porous membrane of .3. The battery separator according to claim 2 , wherein the porous layer comprises at least one of polyamideimide resin claim 2 , polyimide resin claim 2 , and polyamide resin.4. The battery separator according to claim 2 , wherein the porous layer comprises fluorine-based resin.5. The battery separator according to claim 2 , wherein the porous layer comprises at least one of inorganic particles and cross-linked polymer particles.6. The battery separator according to claim 2 , wherein the thickness of the polyolefin porous membrane is at most 16 μm.7. The battery separator according to claim 2 , wherein the thickness of the polyolefin porous membrane is at most 12 μm.8. A method of manufacturing a porous membrane claim 2 , the method comprising:(a) preparing polyethylene resin solution by melting and kneading after adding a forming solvent to polyethylene resin;(b) extruding the polyethylene resin solution through a die, chilling the polyethylene resin solution with a chill-roll having a surface from which residue forming solvent is removed, and forming a gel-like product;(c) stretching the gel-like ...

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03-02-2022 дата публикации

Fine pattern transfer mold and fine pattern molding method

Номер: US20220032518A1
Автор: Hisashi Hashimoto
Принадлежит: Sanko Kasei Co Ltd

A purpose of the present disclosure is to provide a fine pattern transfer mold and a fine pattern molding method that allow high-resolution transfer of a fine pattern to the interior of a hollow product by integral molding. In a product formation chamber that is formed between a cavity and a core pin member having a predetermined portion at which a fine pattern original plate is fixed by closing of a mold body, a gate into which a molten resin material flows from a hot runner member has an opening that is located outside an end of a fixed surface of the fine pattern original plate in a horizontal direction of the fixed surface and that faces the end of the fixed surface, an injection nozzle of the hot runner member and the gate are directly coupled together, and the hollow product is integrally molded by the resin material flowing from the gate.

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12-01-2017 дата публикации

MULTI-LAYERED 3D PRINTED LASER DIRECT STRUCTURING FOR ELECTRICAL INTERCONNECT AND ANTENNAS

Номер: US20170013712A1
Принадлежит:

A multi-layered 3D printed laser direct structuring method and apparatus for electrical interconnect and antennas. 3D printed components can be configured with structurally integrated metal connections (e.g., bulk highly conductive metal) that traverse multiple layers (some embedded and others external) of a structure fabricated using an additive manufacturing system enhanced with an iterative laser activated plating processes, which includes a novel well side-wall vertical interconnect. 1. A method of making a three-dimensional electronic or electromechanical component/device , said method comprising:configuring with a 3D printer at least two layers of a three-dimensional substrate of a structure activated by a laser;selectively activating at least one interconnect utilizing said laser traces of electrical interconnect with respect to said structure;electrolessly plating said structure to provide a new electrical interconnect that is highly conductive and densely routed;re-inserting said structure with registration into said 3D printer;depositing an additional dielectric with a majority of said new electrical interconnect covered and embedded, but with at least some of said new electrical interconnect exposed at a bottom of at least one well having sidewalls; andactivating said sidewalls of said at least one well and providing a connection between said at least two layers.2. The method of wherein said at least one interconnect comprises a horizontal interconnect.3. The method of wherein said at least one interconnect comprises a vertical interconnect.4. The method of wherein said at least one interconnect comprises a horizontal interconnect and a vertical interconnect.5. The method of wherein said structure comprises a dielectric structure.6. The method of wherein said connection between said at least two layers is provided after a subsequent electroless plating operation.7. The method of wherein activating said side-walls of said at least one well claim 1 , ...

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03-02-2022 дата публикации

System and control method for embossed-in-register of sheet

Номер: US20220032607A1
Принадлежит: Qingdao Sanyi Plastic Machinery Co Ltd

A system and control method for embossed-in-register of a sheet is provided. The system comprises a printed film winding/releasing mechanism, a film laminating roller and a pattern roller spaced from the film laminating roller, wherein the printed film is provided with first identifiers at intervals, and the pattern roller is provided with second identifiers at intervals; the system further comprises: a color code sensing mechanism configured to detect the first identifiers, an encoder configured to detect a rotation position of the pattern roller, and a control system; the control system comprises a storage unit, a data acquisition unit and a control unit; wherein, the control unit is configured to calculate a deviation of a pattern position, corresponding to a current first identifier, of the printed film and a pattern position, corresponding to a current second identifier, of the pattern roller in a same pattern, and generating a control signal of the pattern roller based on the deviation. According to the present application, a high-precision adjustment signal of the pattern roller may be generated, an EIR effect is guaranteed, the outturn percentage is increased, and the production cost is reduced.

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19-01-2017 дата публикации

TRIM COMPONENT FOR VEHICLE INTERIOR

Номер: US20170015032A1
Принадлежит:

A method for producing a trim component for vehicle interior is disclosed. The method may produce multilayer molded bodies (e.g. interior compartments/fittings for vehicles) in which a reverse side of a leather material is backed with a plastic by injection molding. In order to prevent the leather material from being damaged by the injection pressures and/or temperatures during the in-mold injection molding process, the method provides for introducing untreated leather material into the injection mold. 1. A method for producing a trim component for a vehicle interior comprising a leather material backed with a plastic material in an apparatus comprising a tool comprising the steps of:(a) placing an untreated leather material into the tool;(b) introducing molten plastic material into the tool to form a formed component comprising the leather material and the plastic material; and(c) removing the formed component from the tool.2. The method of wherein the untreated leather material comprises leather that is tanned.3. The method of wherein embossing is introduced in or on the leather material by the tool.4. The method of wherein a surface of the leather material provided with a color finish after the formed component is removed from the tool.5. The method of wherein a protective coating is applied to the color finish after application of the color finish.6. The method of wherein the formed component comprises a multilayer molded body of thermoplastic material and leather material.7. The method of wherein the untreated leather material comprises at least one of (a) tanned leather; (b) uncolored leather; (c) scrap leather; (d) crust leather.8. The method of wherein the leather material is at least one of (a) unstretched and untreated; (b) flat and uncurried; (c) cut from dried leather.9. The method of wherein the apparatus comprises an injection mold and the plastic material is introduced under pressure into a chamber of the injection mold.10. The method of wherein the ...

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21-01-2016 дата публикации

RETAINER DEVICE AND METHOD OF MOLDING SAME

Номер: US20160015849A1
Принадлежит:

A molded retainer and a method for making the molded retainer are provided. The molded retainer includes a body defining a coupling sleeve, molded from a plastic material and defined by one or more sidewalls. An axial opening is formed in the sleeve about a central axis and at least one transverse engagement opening is formed in the sidewall. An engagement member is integrally molded with the retainer body and is pivotably attached to the sidewall within the engagement opening. The engagement member is pivotable between a first position and a second position, wherein in the first position at least a portion of the engagement member is positioned within the axial opening for engagement with a structure positioned within the axial opening.

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18-01-2018 дата публикации

System and Method for Complex Objects Molding

Номер: US20180015531A1
Автор: Kazantsev Sergey
Принадлежит:

A molding system and method, allowing for the repeated use of the same molding insert for purposes of elaborate objects molding is described. The proposed method allows for multiple moldings of intricate shapes and curvatures improving the mass production of the jewelry moldings. During the process, the raw molding material is squeezed through the narrow opening inside the mold form under pressure. As the molding material enters the mold form, it is coated with a coating fluid. After the curing, the molding material could be easily removed through a narrow cavity opening, promptly reassembling back to the shape of the insert for continuous use in the next steps of the molding procedure. 1. An unmixable combination comprising:an elastomer having a property to change into a more rigid physical state under an outside influence;a fluid, having a property to remain unchanged under said outside influence;said elastomer further having a property to be protruded to enter a hollow cavity, while said fluid spreads on the said elastomer's surface, preventing said elastomer from binding with itself and other surfaces;said unmixable combination being used to fill said hollow cavity and further used in a molding process.2. The unmixable combination of claim 1 , wherein said elastomer is selected from the group consisting of high temperature vulcanizing silicone (HTV) claim 1 , mold making rubber claim 1 , natural rubber claim 1 , room temperature vulcanization (RTV) silicone putty claim 1 , thermoplastic rubbers (also known as thermoplastic elastomers claim 1 , or TPE) claim 1 , and reactoplastic polymers.3. The unmixable combination of claim 1 , wherein said fluid is selected from the group consisting of mineral oil claim 1 , organic oil claim 1 , siloxanes claim 1 , and Mold Release liquids.4. The unmixable combination of claim 1 , wherein fluid is further mixed with filler powder selected from the group consisting of metal powders claim 1 , metal oxide powders claim 1 , ...

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18-01-2018 дата публикации

PROFILED SECTION, ESPECIALLY FOR A MOTOR VEHICLE, AND METHOD FOR THE PRODUCTION THEREOF

Номер: US20180015651A1
Принадлежит:

A profile section () for a motor vehicle comprises a decorating portion (), which is composed of a fiber composite material. The fiber composite material comprises an elastomer matrix made of a first elastomer and flock fibers (). The flock fibers () each have a fiber length which is comprised of a first length and a second length. In addition, the flock fibers have one matrix portion embedded in the elastomer matrix and one exposed portion protruding from the elastomer matrix. The matrix portion has the first length and the exposed portion has the second length. 1. (canceled)2. (canceled)3. (canceled)4. (canceled)5. (canceled)6. (canceled)7. (canceled)8. (canceled)9. (canceled)10. A method for manufacturing a profile section having a mounting portion for mounting the profile section to a motor vehicle and a decorating portion comprising the steps of:a) extruding a mixture of a first elastomer and flock fibers for forming the decorating portion with elevations and depressions in a visible surface of the decorating portion, wherein the extruded first elastomer forms an elastomeric matrix within which the flock fibers are embedded in a way that the flock fibers have a fiber length composed of a first length that is embedded within the elastomeric matrix and a second length that protrudes from the elastomeric matrix for creating textile-like optics and haptic, wherein the first length is longer than the second length;b) forming the mounting portion; andc) arranging the decorating portion on the mounting portion.11. The method of claim 10 , including a step of mixing the first elastomer and the flock fibers before the step of extruding the mixture.12. The method of in which the step of forming the mounting portion includes a step of coextruding the mounting portion together with the decorating portion.13. The method of in which the step of extruding includes a step of forming the elevations and depressions as variations in a thickness of the elastomeric matrix.14. The ...

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21-01-2016 дата публикации

Composite structure formed of fiber reinforced plastic sheet and metallic sheet, and manufacturing method thereof

Номер: US20160016359A1
Принадлежит: Aisin Takaoka Co Ltd

A manufacturing method of a composite structure includes: (a) preparing: a metallic sheet(s) having a through-hole(s) penetrating throughout the metallic sheet(s) in its thickness direction; (b) setting a prepreg(s), constituting a fiber reinforced plastic sheet(s), and the metallic sheet in a pair of dies, which have a recess(es) arranged at a position(s) opposed to one side opening(s) of the through-hole(s), the recess(es) having a larger diameter than the one side opening; (c) closing the dies, wherein, upon closing, (ca) the prepreg(s) and the metallic sheet are molded to the predetermined shape, while surface-contacting therebetween, (cb) at least one of the prepreg(s) and a patch member(s) is extruded into the through-hole(s), so that the shaft part is molded, and (cc) the patch member(s) forms at least part of a head part(s) in the recess(es), the head part(s) integrated with the shaft part(s) and engaging on the metallic sheet(s).

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21-01-2021 дата публикации

MOULDING STATION FOR SHEAR WEB PRODUCTION AND A MANUFACTURING METHOD THEREOF

Номер: US20210016533A1
Принадлежит:

This invention relates to a moulding station and a method using such moulding station, wherein the moulding station comprises a first web mould and a second web mould arranged on different levels. The first web mould is configured for manufacturing a first shear web and the second web mould is configured for manufacturing a second shear web. The first and second shear webs are moved to a post-moulding sub-station for assembly or finishing steps or to a transfer area. The present invention enables the sets of shear webs to be manufactured at multiple levels, thereby increasing the production capacity. 12324233424342324303132332320242120. A moulding station comprising a first web mould () and at least a second web mould () , the first web mould () comprising a moulding surface () for moulding a first shear web , the second web mould () comprising a moulding surface () for moulding a second shear web , wherein each of said first and second web moulds ( , ) comprises a first end () , a second end () , a first side () and a second side () , characterised in that the first web mould () is arranged at a ground level () and the second web mould () is arranged at an upper level () located above the ground level ().221222322. The moulding station according to claim 1 , characterised in that said upper level () is formed by a working platform () extending in a longitudinal direction and in a transverse direction claim 1 , wherein said first web mould () is arranged below said working platform ().325202321242534. The moulding station according to claim 1 , characterised in that at least a third web mould () is further arranged at the ground level () relative to the first web mould () and/or at the upper level () relative to the second web mould () claim 1 , the third web mould () comprising a moulding surface () for moulding at least a third shear web.4232425. The moulding station according to claim 3 , characterised in that said first or second web mould ( claim 3 , ) and said ...

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17-04-2014 дата публикации

RESIN MOLDING APPARATUS AND RESIN MOLDING METHOD

Номер: US20140103552A1
Принадлежит: SHARP KABUSHIKI KAISHA

A lens molding apparatus () of the present invention includes: a mold () having a transfer surface () for transferring a predetermined lens shape to a resin material; a mold () having a transfer surface () for transferring a predetermined lens shape to the resin material; a support device () for moving the mold (); a heating device () curing the resin material so as to form a lens, the resin material having been supplied between the transfer surface () and the transfer surface (); and an ultrasonic vibrator () applying vibration from a side surface of the mold ( or ) so as to form a gap at least at a part between the transfer surface (or ) and the lens. 1. A resin molding apparatus comprising:a first mold having a first transfer surface for transferring a predetermined shape to a resin material;a second mold having a second transfer surface for transferring a predetermined shape to the resin material, the second transfer surface being opposed to the first transfer surface;moving means that shifts a relative position of the first mold and the second mold;curing means that cures the resin material so as to form a resin molded product, the resin material having been supplied between the first transfer surface and the second transfer surface;first vibration applying means that applies vibration from a side surface of the first mold so as to form a gap at least at a part between the first transfer surface and the resin molded product;wherein the resin molded product is one or more lenses;wherein the one or more lenses has an optical surface and a non-optical surface formed on an outer periphery of the optical surface; andwherein the gap is formed at least at a part between the non-optical surface and a surface in contact with the non-optical surface but no gap is formed between the optical surface and a surface in contact with the optical surface.2. The resin molding apparatus as set forth in claim 1 , further comprising second vibration applying means that applies ...

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17-04-2014 дата публикации

Image processing device, Image processing system, and image processing method

Номер: US20140104337A1
Автор: Minoru Koyama, Toru Fujita
Принадлежит: Seiko Epson Corp

An image processing device for forming an image on a medium includes an image data acquiring part and an expanding part. The image data acquiring part is configured to acquire an image data used for forming the image. The expanding part is configured to expand, based on a correspondence relationship for expansion, the acquired image data into a plurality of printing data.

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26-01-2017 дата публикации

SHAPE MEMORY POLYMER SCAFFOLDS FOR TISSUE DEFECTS

Номер: US20170021060A1
Принадлежит:

A method of making a shape memory polymer (SMP) tissue scaffold includes forming a salt template and adding a macromer solution to the salt template. The macromer solution may include a photoinitiator solution. The method includes drying the SMP scaffold and leaching salt from the SMP scaffold. A coating is then applied to the SMP scaffold. The coating may be applied either before or after heating the SMP scaffold. 1. A method of making a shape memory polymer (SMP) tissue scaffold , the method comprising:forming a salt template;adding a mixture to the salt template, wherein the mixture comprises a macromer solution and at least one photoinitiator solution;forming a SMP scaffold;drying the SMP scaffold;leaching salt from the SMP scaffold;applying a coating to the SMP scaffold; anddrying the SMP scaffold.2. The method of claim 1 , comprising:heating, the SMP scaffold after the drying.3. The method of claim 1 , comprising:heating, the SMP scaffold after the leaching.4. The method of claim 1 , comprising centrifuging the mixture after adding the mixture to the salt template.5. The method of claim 1 , comprising exposing the SMP scaffold to UV light after adding the mixure to the salt template.6. The method of claim 1 , comprising degassing the SMP scaffold after submersion in coating solution.7. The method of claim 1 , comprising rinsing the SMP scaffold in deionized water after applying the coating to the SMP scaffold.8. The method of claim 1 , wherein forming the SMP scaffold comprises creating a salt template from salt having a salt size and a degree of salt fusion;9. The method of claim 8 , wherein creating a salt template comprises placing salt particles into a container claim 8 , adding deionized water to the container claim 8 , and centrifuging the salt template.10. The method of claim 1 , wherein drying the SMP scaffold comprises drying the SMP scaffold in vacuo.11. The method of claim 1 , wherein the macromer solution includes at least one of polycaprolactone ...

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28-01-2016 дата публикации

IMPRINT METHOD, IMPRINT APPARATUS, AND ARTICLE MANUFACTURING METHOD

Номер: US20160023380A1
Автор: Kondo Yousuke
Принадлежит:

Provided is an imprint method comprising a step for determining whether or not a process for reducing adhesive strength between the imprint material and the pattern of the mold is required, wherein, if the determination step determines that the process for reducing adhesive strength is required, the process for reducing adhesive strength is performed by bringing the material for reducing adhesive strength on the substrate for reducing adhesive strength, which is different from a substrate to be patterned, into contact with the pattern of the mold, and then an imprint process is performed, whereas if the determination step determines that the process for reducing adhesive strength is not required, the process for reducing adhesive strength is not performed, and the imprint process is performed. 1. An imprint method for performing an imprint process in which an imprint material on a substrate to be patterned is brought into contact with a pattern of a mold to form a pattern of the imprint material , the imprint method comprising a step of determining whether or not a process for reducing adhesive strength between the imprint material and the pattern of the mold is required ,wherein, if the determination step determines that the process for reducing adhesive strength is required, the process for reducing adhesive strength is performed by bringing a material for reducing adhesive strength on a substrate for reducing adhesive strength, which is different from the substrate to be patterned, into contact with the pattern of the mold, and then the imprint process is performed, andwherein if the determination step determines that the process for reducing adhesive strength is not required, the process for reducing adhesive strength is not performed and the imprint process is performed.2. The imprint method according to claim 1 , wherein the determination step determines that the process for reducing adhesive strength is required if the number of transfer of the pattern of the ...

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28-01-2016 дата публикации

METAL/PLASTIC HYBRID STRUCTURAL PARTS

Номер: US20160023389A1
Принадлежит:

The invention relates to a structural part that has a metal component, a plastic component and a bonding agent system interconnecting the metal component and the plastic component. The invention is characterized in that the bonding agent system consists of a plastic bonding agent or of a plastic bonding agent combined with a primer, the plastic bonding agent being a polyester, a polyurethane or an epoxide that is modified with a diene and/or a polyene. The invention also relates to a method for producing said structural part. 1. A method for the manufacture of a structural part comprising a metal component and a plastic component , comprising the following steps:(a) providing the metal component, wherein the metal component is coated with a precured bonding agent system on at least one side;(b) introducing the metal component coated with the precured bonding agent system into an injection mold, such that the precured bonding agent layer faces a free volume in the mold, and(c) injection molding the plastic component onto the metal component, wherein the bonding agent system further cures,wherein the bonding agent system comprises a plastic bonding agent or a plastic bonding agent in combination with a primer, wherein the plastic bonding agent is selected from an epoxide, a polyurethane, or a polyester, wherein the plastic bonding agent is modified with a diene, a polyene or a combination thereof, and wherein the bonding agent system is completely cross-linked by thermal activation in two steps.2. The method of claim 1 , further comprising coating the metal component with the bonding agent system before step (a) by spray painting claim 1 , immersion coating claim 1 , powder coating claim 1 , catalytic immersion coating claim 1 , or coil coating.3. The method of claim 1 , wherein the bonding agent system is precured before step (a) at a temperature of 100 to 140° C. for a duration of 20 to 40 seconds.4. The method of claim 1 , wherein the mold is preheated to a ...

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28-01-2016 дата публикации

METHOD FOR MAKING ELECTROTHERMAL ACTUATORS

Номер: US20160023411A1
Принадлежит:

A method for making an electrothermal actuator requires a carbon nanotube paper being provided. The carbon nanotube paper is cut along a cutting-line to form a patterned carbon nanotube paper. At least two electrodes are formed on the patterned carbon nanotube paper. Finally, the electrothermal actuator is obtained by forming a flexible polymer layer on the patterned carbon nanotube paper. 1. A method for making an electrothermal actuator comprising:{'sup': '3', 'providing a carbon nanotube paper, wherein the carbon nanotube paper comprises a plurality of carbon nanotubes extending along the same direction and joined end to end by van der Waals attractive force, and a density of the carbon nanotube paper is greater than or equal to 0.5 g/cm;'}forming a patterned carbon nanotube paper by cutting the carbon nanotube paper along a cutting-line, wherein an angle between an extending direction of the plurality of carbon nanotubes and at least a portion of the cutting-line is in a range from about 45 degrees to about 90 degrees;electrically connecting at least two electrodes to the patterned carbon nanotube paper; andforming a flexible polymer layer on the patterned carbon nanotube paper, wherein the patterned carbon nanotube paper is at least partly embedded into the flexible polymer layer, a thickness ratio of the carbon nanotube paper and the flexible polymer layer is in a range from about 1:7 to about 1:10, and a thermal expansion coefficient of the carbon nanotube paper is greater than or equal to ten times that of the flexible polymer layer.2. The method of claim 1 , wherein the thermal expansion coefficient of the carbon nanotube paper is greater than or equal to one hundred times that of the flexible polymer layer.3. The method of claim 1 , wherein a thickness of the carbon nanotube paper is in a range from about 30 micrometers to about 50 micrometers.4. The method of claim 1 , wherein a thickness of the flexible polymer layer is ranged from about 270 micrometers ...

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26-01-2017 дата публикации

Method of manufacturing a molded door skin from a flat wood composite, door skin produced therefrom, and door manufactured therewith

Номер: US20170021532A1
Автор: Hartley Moyes
Принадлежит: Masonite Corp

A method of manufacturing a hollow core door is disclosed, as wall as a corresponding hollow core door. The method includes the steps of providing a solid flat door skin, moisturizing the flat skin, applying a conditioning resin thereto, pre-heating the flat door skin, and thereafter pressing the flat door skin between a pair of heated platens in a press in order to reform the flat skin into a molded skin including a plurality of panels defined therein. The press continuously closes in order to reform the flat skin into the molded skin, with the rate of press closure being a function of the determined hardness of the flat skin to be reformed. The resulting door skins have an improved bond strength, and are efficiently manufactured.

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26-01-2017 дата публикации

Device and Method for Decorating Plastic Parts

Номер: US20170021536A1
Автор: Harald Burger, Martin Hahn
Принадлежит: Leonhard Kurz Stiftung and Co KG

There is described an apparatus for performing the in-mold decoration method with an injection tool ( 1 ). The injection tool ( 1 ) has a first tool portion ( 11 ) having a first mold recess ( 13 ) and a second tool portion ( 12 ) having a second mold recess ( 15 ) corresponding to the first mold recess. The second tool portion ( 12 ) has at least one injection passage ( 12 e ), wherein a portion of an endless decorative film ( 16 ) can be arranged between the first tool portion ( 11 ) and the second tool portion ( 12 ). The mold recess ( 13 ) of the first tool portion ( 11 ) has a raised edge region ( 14 ) extending in a closed configuration around the mold recess ( 13 ) and having an end face ( 14 s ) which is flattened or rounded or pointed in cross-section. The second tool portion ( 12 ) has a corresponding end face ( 12 s ) parallel to the end face ( 14 s ) of the raised edge region ( 14 ). When the injection tool ( 1 ) is closed there is a spacing (s) between the end face ( 14 s ) of the raised edge region ( 14 ) of the first tool portion ( 11 ) and the corresponding end face ( 12 s ) of the second tool portion ( 12 ) at least over a subregion, wherein the spacing is sealed by the decorative film ( 16 ). A method for same is further described.

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26-01-2017 дата публикации

Mould for Producing a Fibre Composite Component

Номер: US20170021577A1
Принадлежит:

A tool for producing a fiber composite component includes at least two tool portions which have partial cavities and which are moved together in a production position in such a manner that they form a cavity, in which cavity the fiber composite component is produced. Associated with at least a first tool portion there is a retention element which retains the fiber composite component produced in the first tool portion when the tool portions are moved apart after the production of the fiber composite component. 1. A tool for producing a fiber composite component , the tool comprising:at least two tool portions which have partial cavities and which are moved together in a production position in such a manner that they form a cavity, in which cavity the fiber composite component is produced, whereinthere is associated with at least a first tool portion a retention element which retains the fiber composite component produced in the first tool portion when the tool portions are moved apart after the production of the fiber composite component.2. The tool as claimed in claim 1 , wherein the retention element is movable between an initial position and a retention position.3. The tool as claimed in claim 1 , wherein the retention element is actuatable pneumatically claim 1 , hydraulically or electrically claim 1 , and in particular is a pneumatically claim 1 , hydraulically or electrically actuatable tensioner.4. The tool as claimed in claim 3 , wherein the tool portions each have surfaces with which the fiber composite component to be produced is in contact.5. The tool as claimed in claim 4 , wherein the surfaces are coated.6. The tool as claimed in claim 4 , wherein the surfaces are plasma-nitrided claim 4 , mirror-polished or chromium-plated.7. The tool as claimed in claim 6 , wherein the tool has a removal element which removes the fiber composite component produced from the tool.8. The tool as claimed in claim 7 , wherein the removal element comprises at least one ...

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25-01-2018 дата публикации

IMPRINT TEMPLATE, DETECTION METHOD AND DETECTION DEVICE

Номер: US20180021987A1
Принадлежит: BOE Technology Group Co., Ltd.

The embodiments of the present disclosure provide an imprint template, a detection method and a detection device. The imprint template includes a first region and a second region located in the periphery of the first region. The first region is provided with a first imprint structure configured to imprint a first film layer pattern into a base material in a product region of a target substrate. The second region is provided with a second imprint structure configured to imprint a second film layer pattern into the base material in the periphery of the product region of the target substrate. And the second film layer pattern is used for assessing imprint quality of the first film layer pattern. 1. An imprint plate , comprising:a first region;a second region located in the periphery of the first region;a first imprint structure provided in the first region and configured to imprint a first film layer pattern into a base material in a product region of a target substrate; anda second imprint structure provided in the second region and configured to imprint a second film layer pattern into the base material in the periphery of the product region of the target substrate, the second film layer pattern being used for assessing imprint quality of the first film layer pattern.2. The imprint template according to claim 1 , wherein the first imprint structure has a first imprint pattern corresponding to the first film layer pattern claim 1 , and the second imprint structure has a second imprint pattern corresponding to the second film layer pattern; andthe second imprint pattern has a groove depth larger than that of the first imprint pattern.3. The imprint template according to claim 2 , wherein the pattern imprinted by the second imprint structure has an area larger than that of the pattern imprinted by the first imprint structure.4. The imprint template according to claim 2 , wherein areas of cross-sections of the second imprint pattern are gradually reduced in a depth ...

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16-01-2020 дата публикации

Partially Molded Substrate And Partial Molding Device And Method

Номер: US20200022254A1
Автор: CHO Hyunki, Kim Jeong Wan
Принадлежит: LG CHEM, LTD.

A partially molded substrate and a partial molding apparatus and a method thereof, which cover and mold each of one or more conductors formed on the substrate with the insulator to prevent the sizes of the substrate from being increased due to molding, thereby efficiently preventing high voltage between the conductors on the substrate from being applied, and thereby preventing interference around the conductor. 1. A partially molded substrate comprising:a conductor formed on one surface of the substrate,wherein the conductor is covered and molded with an insulator.2. The partially molded substrate of claim 1 , wherein the conductor includes a portion that protrudes from the surface of the substrate claim 1 , wherein the protruding portion of the conductor is covered and molded with an insulation cap formed by the insulator.3. The partially molded substrate of claim 1 , wherein the conductor is covered and molded with the insulator having a predetermined thickness.4. The partially molded substrate of claim 1 , wherein the conductor is selectively covered and molded with the insulator based on the conductor being positioned in a predetermined molding region.5. The partially molded substrate of claim 1 , wherein the conductor is selectively covered and molded with the insulator based on the conductor having a voltage equal to or higher than predetermined voltage.6. A partial molding apparatus comprising:a substrate;one or more conductors formed on one surface of the substrate;a sensing unit configured to sense each of the one or more conductors; anda molding unit configured to cover and mold each of one or more conductors sensed by the sensing unit with an insulator.7. The partial molding apparatus of claim 6 , wherein when a conductor protrudes from the surface of the substrate claim 6 , the molding unit is configured to cover and mold the protruding conductor with an insulation cap formed by the insulator.8. The partial molding apparatus of claim 6 , wherein the ...

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24-01-2019 дата публикации

Method for making oxygen remediating melt-incorporated additives in plastics for packages

Номер: US20190022900A1
Автор: George D. Sadler
Принадлежит: Performance Managing And Consulting Inc

A product and method for providing oxygen remediating extruded or other melt-phase plastics for packages for reducing oxygen-linked damage to foods, pharmaceuticals, or other oxygen sensitive substances. The method for making oxygen remediating melt-phase incorporated plastics for packages and packaging elements generally includes the addition of an oxygen managing combination of compounds that restrict the migration of oxygen and/or eliminate migration oxygen through reaction with components of the polymer additive. Dry components remain inactive until moisture from the packaged food partially deliquesces a formulary component to trigger oxidation of a powdered metal or other oxidizing compound. Other additives absorb and distribute moisture and facilitate electron movement for improved oxidation.

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24-01-2019 дата публикации

V-belt manufacturing method

Номер: US20190022964A1
Принадлежит: Bando Chemical Industries Ltd

A production method of a V-belt uses a belt mold having a plurality of compression layer-shape grooves arranged adjacent to one another in a groove width direction. A shaped structure having a plurality of ridges on an outer peripheral surface is crosslinked and combined with a fabric material to form a belt slab, while the compression layer-forming portions, which are the ridges covered with the fabric material, being fitted in the respective compression layer-shape grooves of the belt mold. The belt slab is cut into ring-shaped pieces such that one ring-shaped piece corresponds to one compression layer-forming portion.

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24-01-2019 дата публикации

METHOD FOR PREPARING STRUCTURED ADHESIVE ARTICLES

Номер: US20190023950A1
Автор: Free Michael Benton
Принадлежит:

Methods of forming laminating adhesive articles include providing a multi-layer article, and a tool with a structured surface. The multi-layer articles include a substrate, an adhesive layer, and a liner. The multi-layer article is placed between the structured surface of the tool and a support surface that is hard and the tool is embossed against the liner by applying pressure or pressure/heat. The embossing causes the tool structures to distort the liner and the adhesive layer, and causes permanent topological changes in a portion of the adhesive layer, but does not distort the substrate. The distortion in the liner is retained upon release of the applied pressure. The portions of topologically changed adhesive can form convex structures that are permanent. Upon removal of the liner from the adhesive layer, the concave structures on the adhesive layer are unstable, but the convex structures are stable. 1. A method of forming an article comprising: a substrate with a first major surface and a second major surface;', 'an adhesive layer with a first major surface and a second major surface,', 'wherein the first major surface of the adhesive layer is contacting the second major surface of the substrate; and', 'a liner with a first major surface and a second major surface, wherein the first major surface of the liner is contacting the second major surface of the adhesive layer;, 'providing a multi-layer article comprisingproviding a tool with a structured surface;placing the multi-layer article between the structured surface of the tool and a support surface to form a construction, such that the first major surface of the substrate is in contact with the support surface, and wherein the support surface comprises a hard support surface;applying pressure to the construction such that at least some of the structures on the surface of the tool distort the liner and the adhesive layer but does not distort the second major surface of the substrate, and such that the ...

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28-01-2021 дата публикации

THREE-DIMENSIONAL PRINTING METHODS FOR REDUCING BUBBLES BY DE-GASSING THROUGH BUILD PLATE

Номер: US20210023783A1
Принадлежит:

A method of forming a three-dimensional object includes providing a carrier and an optically transparent member having a build surface. The carrier and the build surface define a build region therebetween. The method further includes filling said build region with a polymerizable liquid; continuously or intermittently irradiating said build region with light through said optically transparent member to form a solid polymer from said polymerizable liquid; applying a reduced pressure and/or polymer inhibitor-enriched gas to the polymerizable liquid through the optically transparent member to thereby reduce a gas content of the polymerizable liquid; and continuously or intermittently advancing (e.g., sequentially or concurrently with said irradiating step) said carrier away from said build surface to form said three-dimensional object from said solid polymer. 1. An apparatus for forming a three-dimensional object from a polymerizable liquid , comprising:(a) a support;(b) a carrier operatively associated with said support on which carrier said three-dimensional object is formed;(c) a gas permeable optically transparent member having a build surface, with said build surface and said carrier defining a build region therebetween;(d) a liquid polymer supply operatively associated with said build surface and configured to supply liquid polymer into said build region for solidification or polymerization;(e) a radiation source configured to irradiate said build region through said optically transparent member to form a solid polymer from said polymerizable liquid;(f) optionally at least one drive operatively associated with either said transparent member or said carrier;(g) a controller operatively associated with said carrier, and/or optionally said at least one drive, and said radiation source for continuously or intermittently advancing said carrier away from said build surface to form said three-dimensional object from said solid polymer,(h) a gas/pressure controller in ...

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24-04-2014 дата публикации

BLOW MOULDING MACHINE WITH A CLEAN ROOM AND A DRYING UNIT FOR SUPPLYING AIR

Номер: US20140110876A1
Принадлежит: KRONES AG

An apparatus is provided for moulding plastic preforms into plastic containers, including a transport unit, on which a plurality of moulding stations is provided and which moves the moulding stations along a predefined transport path, wherein the moulding stations respectively have blow mould parts that are movable relative to each other, the parts are movable relative to each other for opening and closing blow moulds; and including a clean room that surrounds a transport path, along which the moulding stations are transported, and which is separated from an environment by at least one wall; wherein the apparatus includes a cooling system for cooling at least one element of the respective moulding stations; and wherein the apparatus includes a supply unit that supplies a gaseous medium to the clean room. The apparatus also includes a drying unit for drying the gaseous medium supplied to the clean room via the supply unit. 1. An apparatus for moulding plastic preforms into plastic containers , comprising: a transport unit , on which a plurality of moulding stations is provided and which moves these moulding stations along a predefined transport path , these moulding stations respectively having blow mould parts that are movable relative to each other , which blow mould parts are movable relative to each other for opening and closing blow moulds; a clean room that surrounds a transport path , along which said moulding stations are transported , and which is separated from an environment by means of at least one wall; a cooling system for cooling at least one element of the respective moulding stations; a supply unit that supplies a gaseous medium to the clean room; anda drying unit configured for drying the gaseous medium supplied to the clean room via the supply unit.2. The apparatus as claimed in claim 1 , wherein the cooling unit includes at least one conduit for conducting a flowable cooling medium claim 1 , which is supplied to the blow mould elements for the ...

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29-01-2015 дата публикации

MOLD RELEASABILITY EVALUATING APPARATUS AND MOLD RELEASABILITY EVALUATION METHOD

Номер: US20150028505A1
Автор: YAMAUCHI Ikuo
Принадлежит: TOYOTA JIDOSHA KABUSHIKI KAISHA

A mold releasability evaluating apparatus includes a forming die that includes a bottom portion having a main surface, and a wall surface portion that is connected to the main surface of the bottom portion and has a wall surface in which an angle formed with the main surface of the bottom portion is an obtuse angle; an extrusion pin capable of protruding out from the main surface of the bottom portion in a direction that separates a compact from the main surface of the bottom; and a measuring device configured to measure a load applied to the extrusion pin when the extrusion pin pushes the compact away from the main surface of the bottom portion, after one surface of the compact is formed by the main surface of the bottom portion. 1. A mold releasability evaluating apparatus comprising:a forming die that includes a bottom portion having a main surface, and a wall surface portion that is connected to the main surface of the bottom portion and has a wall surface in which an angle formed with the main surface of the bottom portion is an obtuse angle;an extrusion pin capable of protruding out from the main surface of the bottom portion in a direction that separates a compact from the main surface of the bottom; anda measuring device configured to measure a load applied to the extrusion pin when the extrusion pin pushes the compact away from the main surface of the bottom portion, after one surface of the compact is formed by the main surface of the bottom portion.2. A mold releasability evaluation method comprising:{'claim-ref': {'@idref': 'CLM-00001', 'claim 1'}, 'a first step of forming, using the mold releasability evaluating apparatus according to , the one surface of the compact with the main surface of the bottom portion;'}a second step of pushing the compact away from the main surface of the bottom portion by the extrusion pin; anda third step of measuring the load applied to the extrusion pin in the second step.3. The mold releasability evaluation method ...

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04-02-2016 дата публикации

Apparatus for making a catheter

Номер: US20160030706A1
Автор: Jan Kent Olsen
Принадлежит: Unomedical AS

The present invention concerns a catheter for medical purposes, such as for insertion into a body opening for draining fluids, wherein the catheter comprises a flexible tube having a distal end region wherein the tube is provided with at least one draining opening, characterised in that the peripheral edge on the outside of the tube is provided with a curvature for creating a smooth transition between the exterior surface of the tube and the substantially radially oriented cut constituting the opening side and wherein said curvature is a rounded edge with a curvature radius between 0.2-0.6 mm. The invention further concerns a method of making such catheter and an apparatus for performing this method.

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02-02-2017 дата публикации

FAILURE CAUSE DIAGNOSTIC DEVICE FOR INJECTION MOLDING MACHINE

Номер: US20170028593A1
Автор: MARUYAMA Junpei
Принадлежит:

A failure cause diagnostic device of the present invention receives input of internal and external state data on injection molding machines and diagnoses failure cause of the injection molding machines by means of a machine learning device. An internal parameter of the machine learning device is obtained by performing machine learning using the state data obtained from the injection molding machines subject to failure cause and the state data obtained from the injection molding machines free of failure cause. 1. A failure cause diagnostic device for finding out the cause of failure of the injection molding machine on the basis of input internal and external status data by means of a machine learning device wherein;an internal parameter of the machine learning device is provided through machine learning on the status data obtained upon occurrence of the failure and that of the normal operation of the machine.2. The failure cause diagnostic device according to claim 1 , wherein the internal and external state data include a load on a driving unit of the injection molding machine claim 1 , frequency response of axes claim 1 , resin pressure claim 1 , clamping force claim 1 , alarming history claim 1 , machine operation history claim 1 , process monitoring data for each molding cycle claim 1 , molding conditions claim 1 , and/or quality information on a molded article and information on the occurrence of failure cause.3. The failure cause diagnostic device according to claim 1 , wherein the failure cause of the injection molding machine is predicted using the state data based on the result of the machine learning.4. The failure cause diagnostic device according to claim 3 , wherein a state data causative of failure cause is identified among the state data when the occurrence of the failure cause is predicted.5. The failure cause diagnostic device according to claim 3 , wherein the correlation between the state data and the occurrence of failure cause is calculated when ...

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02-02-2017 дата публикации

APPARATUS AND METHOD FOR FORMING FIBER REINFORCED COMPOSITE STRUCTURES

Номер: US20170028653A1
Принадлежит:

A control rod for incorporation into a composite assembly with at least a first composite preform, a second composite preform, and a cured resin includes a shaft defining an axis, wherein the shaft is disposable within an aperture in the composite assembly, and a plurality of threads disposed on at least a portion of the shaft. The shaft is made from, among other materials, a thermoplastic material. The threads define a thread pitch that encompasses more than one individual fiber layer forming at least one of the first composite layer and the second composite layer. 1. A control rod for incorporation into a composite assembly comprising at least a first composite preform formed of a first plurality of fiber layers , a second composite preform formed of a second plurality of fiber layers , and a cured resin , comprising:a shaft defining an axis, wherein the shaft is disposable through an entirety of the second composite preform and at least partially through the first composite preform; anda plurality of threads disposed on at least a portion of the shaft;wherein the shaft comprises a thermoplastic material, andwherein the threads define a thread pitch that encompasses more than one fiber layer from at least one of the first composite preform and the second composite preform.2. The control rod of claim 1 , wherein the threads are helically disposed around the shaft at a predetermined thread angle.3. The control rod of claim 1 , wherein the threads are annularly disposed around the shaft claim 1 , forming parallel rings spaced along the axis of the shaft.4. The control rod of claim 1 , wherein the shaft includes a top end with a head defining a keyway.5. The control rod of claim 1 , wherein the shaft comprises at least two expandable portions disposed adjacent to one another.6. The control rod of claim 5 , wherein the control rod further comprises a locking rod insertable between the expandable portions so that the threads engage walls of the aperture.7. The control ...

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