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公开(公告)号:US11745295B2
公开(公告)日:2023-09-05
申请号:US17579277
申请日:2022-01-19
Applicant: Sogefi Air & Cooling USA, Inc.
Inventor: Stephen Thompson , Nuno Demetrio-Soeiro , Nicolas Becker
CPC classification number: B23P15/26 , B29C45/1418 , B29C65/08 , B29C66/0246 , B29C66/72 , B29C66/742 , F28F21/062 , H01M10/6556 , B29L2031/18 , H01M2220/20
Abstract: A method for forming a hybrid heat exchanger is provided. The method includes laser-texturing a metal surface to create a plurality of microstructures and subsequently melt-bonding a plastic component to the plurality of microstructures. During melt-bonding, plastic material penetrates the plurality of microstructures and conforms to the plastic component to the metal surface. After hardening inside the microstructures, the plastic component adheres to the metal surface as a hybrid component. As a result, a fastener or snap connection is not required, and the plastic-metal joint provides a barrier to water, glycol-based fluids, air, and other fluids.
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公开(公告)号:US11731412B2
公开(公告)日:2023-08-22
申请号:US17189638
申请日:2021-03-02
Applicant: NITTO DENKO CORPORATION
Inventor: Junichi Inagaki , Takeshi Murashige , Kazuhito Hosokawa , Toshihiro Kanno , Kota Nakai
CPC classification number: B32B37/0046 , B29C65/48 , B29C66/72 , C03C17/32 , B29L2009/00
Abstract: Provided is a production method for a film laminate by which a tough film can be bonded to a brittle film while the breakage of the brittle film is prevented. The production method for a film laminate of the present invention includes bonding a tough film having an elongated shape to a brittle film having an elongated shape while conveying the brittle film, wherein the method includes bonding the tough film and the brittle film to each other by bringing the tough film close to the brittle film, followed by blowing of a gas from a side of the tough film opposite to the brittle film.
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公开(公告)号:US09492991B2
公开(公告)日:2016-11-15
申请号:US13487474
申请日:2012-06-04
Applicant: Ryan Thomas Neill , Gary Wayne Hartley , Michael Eugene Donelson , Theodore Robert Trautman , John Walker Gilmer , James Collins Maine , Bryan Steven Bishop , Robert Erik Young
Inventor: Ryan Thomas Neill , Gary Wayne Hartley , Michael Eugene Donelson , Theodore Robert Trautman , John Walker Gilmer , James Collins Maine , Bryan Steven Bishop , Robert Erik Young
IPC: B29C65/02 , B32B3/00 , B32B7/04 , B32B27/36 , B32B27/30 , B32B37/00 , B32B37/16 , B32B37/18 , H01L31/048 , H01L33/52 , H01L31/049 , G09F13/22 , C08L33/04 , C08L67/02 , C08L67/03 , C08L69/00 , B32B37/06 , B29C65/00 , B32B27/08
CPC classification number: B32B37/06 , B29C65/02 , B29C66/133 , B29C66/43 , B29C66/433 , B29C66/71 , B29C66/72 , B29C66/731 , B29C66/7311 , B29C66/73117 , B29C66/7312 , B29C66/7352 , B29C66/737 , B29C66/739 , B29C66/73921 , B32B3/00 , B32B7/045 , B32B27/08 , B32B27/308 , B32B27/36 , B32B27/365 , B32B37/0007 , B32B37/0046 , B32B37/0076 , B32B37/16 , B32B37/182 , B32B37/185 , B32B2309/02 , B32B2309/04 , B32B2309/12 , B32B2333/04 , B32B2367/00 , B32B2369/00 , B32B2457/00 , B32B2457/08 , B32B2457/10 , B32B2457/12 , B32B2457/20 , B32B2457/202 , B32B2457/206 , C08L33/04 , C08L67/02 , C08L67/03 , C08L69/00 , G09F13/22 , H01L31/0481 , H01L31/049 , H01L33/52 , H01L2933/005 , Y10T428/161 , Y10T428/162 , Y10T428/163 , Y10T428/239 , Y10T428/31507 , Y10T428/31786 , Y10T428/31797 , Y10T428/31928 , Y10T428/31935
Abstract: In one aspect the present invention relates to a method of making an encapsulated electrically energized device, the method comprising: providing a first layer and a second layer each independently comprising a copolyester, a polycarbonate, a polyacrylate, polycarbonate/polyester miscible blends, or mixtures thereof, providing the electrically energized between the first and second layer, thermocompressively fusing the first layer and the second layer to encapsulate the electrically energized device by applying pressure at a temperature, sufficient to form the article, to a perimeter of the surface of the first and second layers, wherein the perimeter does not overlap the electrically energized device, wherein the temperature at the interface of the first and second layers is equal to or greater than Tg of the first layer and the second layer, and wherein the polyester layers have a flow during encapsulation less than the flow that induces fractures in the electrically energized device.
Abstract translation: 一方面,本发明涉及一种制造封装的电通电装置的方法,所述方法包括:提供第一层和第二层,每个第一层和第二层各自独立地包含共聚酯,聚碳酸酯,聚丙烯酸酯,聚碳酸酯/聚酯可混溶的共混物或混合物 提供在第一和第二层之间的电通电,通过在足以形成制品的温度下施加压力到第一和第二层的表面的周边,将第一层和第二层热熔融地熔合,以封装电赋能装置 和第二层,其中所述周边不与所述电通电装置重叠,其中所述第一层和所述第二层的界面处的温度等于或大于所述第一层和所述第二层的Tg,并且其中所述聚酯层具有 在封装期间的流量小于在电通电装置中引起断裂的流动 。
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公开(公告)号:US09234732B1
公开(公告)日:2016-01-12
申请号:US14169587
申请日:2014-01-31
Applicant: Deward L. Cummings, III
Inventor: Deward L. Cummings, III
CPC classification number: F42B39/00 , B29C66/5221 , B29C66/72 , B29C66/7315 , B29K2621/00 , B29K2995/0091 , B29L2031/712 , F42B39/14
Abstract: An explosives storage system including a container having an opening extending from a top end of the container along a center axis of the container, a sidewall formed between an outer perimeter of the container and an inner perimeter of the opening, and a base portion formed at a bottom end of the container to enclose a bottom of the opening, the bottom of the opening having a hemispherical shape.
Abstract translation: 一种爆炸物储存系统,包括容器,该容器具有沿着容器的中心轴线从容器的顶端延伸的开口,形成在容器的外周边与开口的内周边之间的侧壁,以及基部, 容器的底端封闭开口的底部,开口的底部具有半球形状。
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公开(公告)号:US20050081979A1
公开(公告)日:2005-04-21
申请号:US10963066
申请日:2004-10-12
Applicant: Jorg Vetter , Heiko Priem
Inventor: Jorg Vetter , Heiko Priem
CPC classification number: B29C65/0636 , B29C65/0618 , B29C66/712 , B29C66/72 , B29C66/721 , B29C66/73753 , B29C66/73755 , B29C66/7392 , B29C66/73921 , B29C66/7394 , B29C66/7487 , B29C66/944 , B29C66/949 , B29C66/9516 , B29C66/9592 , B29K2101/10 , B29K2105/24 , B29K2105/243 , B29C65/00
Abstract: In a method for linear or biaxial vibration welding, the attenuation time of oscillatory relative movements of the welding parts is reduced in a control manner as compared to the attenuation time obtained by free uncontrolled attenuation of the welding parts so as to improve the mechanical properties of the welding seam. Preferably, the attenuation time is reduced by active braking of the oscillatory relative movements of the welding parts. The active braking may be obtained in various ways, preferably by using an electromagnetic resonance vibration system.
Abstract translation: 在用于线性或双轴振动焊接的方法中,与通过焊接部件的自由不受控制的衰减获得的衰减时间相比,焊接部件的振荡相对运动的衰减时间以控制方式减小,从而提高了焊接部件的机械性能 焊缝。 优选地,通过焊接部件的振荡相对运动的主动制动来减小衰减时间。 可以以各种方式获得主动制动,优选地通过使用电磁共振振动系统。
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公开(公告)号:US4950347A
公开(公告)日:1990-08-21
申请号:US348133
申请日:1989-05-05
Applicant: Hitoshi Futagawa
Inventor: Hitoshi Futagawa
IPC: A61M25/00 , B29C65/00 , B29C65/04 , B29C65/18 , B29C65/32 , B29C65/36 , B29C65/50 , B29K9/00 , B29K9/06 , B29K23/00 , B32B31/28
CPC classification number: B29C65/18 , B29C65/04 , B29C65/3604 , B29C65/4815 , B29C65/5057 , B29C65/72 , B29C66/1122 , B29C66/43 , B29C66/53262 , B29C66/72 , B29C66/73 , B29C66/73143 , B29C66/73921 , B29C66/74 , B29C66/80 , B29C66/81263 , B29C66/81431 , B29C66/8322 , B29C65/3676 , B29C66/71 , B29C66/7485 , B29C66/7486 , B29C66/8122 , B29C66/81423 , B29C66/83221 , B29K2001/00 , B29K2001/12 , B29K2009/00 , B29K2009/06 , B29K2011/00 , B29K2019/00 , B29K2023/00 , B29K2023/06 , B29K2025/00 , B29K2027/06 , B29K2027/08 , B29K2027/12 , B29K2031/04 , B29K2055/02 , B29K2075/00 , B29K2077/00 , B29K2079/085 , B29K2105/0085 , B29K2311/10 , B29K2711/12 , B29K2995/0006 , B29L2031/712 , B29L2031/7148
Abstract: A method of welding thermoplastic resin with a high frequency welder, comprising the step of: putting an exothermic object to generate heat and an adherend made of thermoplastic resin not to be molten when high frequency waves are applied, between electrodes of a high frequency welder and thereafter generating high frequency waves between the electrodes. The method of the present invention enables to weld thermoplastic resin having a low dielectric loss which can not be welded with a high frequency welder.
Abstract translation: 一种用高频焊机焊接热塑性树脂的方法,其特征在于,包括以下步骤:在高频焊机的电极之间放置放热物体以产生热量,由热塑性树脂制成的被粘物在施加高频波时不熔化, 然后在电极之间产生高频波。 本发明的方法能够焊接不能用高频焊机焊接的低介电损耗的热塑性树脂。
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公开(公告)号:US3029180A
公开(公告)日:1962-04-10
申请号:US104960
申请日:1960-01-07
Applicant: UNITED ELASTIC CORP
Inventor: LALIBERTC ARTHUR L
CPC classification number: B65H69/02 , B29C65/48 , B29C65/483 , B29C65/4895 , B29C65/7847 , B29C66/03241 , B29C66/0326 , B29C66/1162 , B29C66/14 , B29C66/344 , B29C66/43 , B29C66/69 , B29C66/71 , B29C66/72 , B29C66/8145 , B29C66/8221 , B29C66/82265 , B29C66/8324 , B65H2701/38 , B29K2021/00
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公开(公告)号:US11850805B2
公开(公告)日:2023-12-26
申请号:US17365105
申请日:2021-07-01
Applicant: SEOUL NATIONAL UNIVERSITY R&DB FOUNDATION
Inventor: Taek Dong Chung , Young-Chang Joo , Jeong-Yun Sun , Seok Hee Han , Sung Il Kim , Hae-Ryung Lee , Seung-Min Lim
CPC classification number: B29C66/026 , B29C35/0805 , B29C66/712 , B29C66/72 , B29C66/723 , B29C66/7316 , C08G77/38 , C08G77/392 , C08L83/04 , B29C2035/0827 , C08L2203/20 , H01L29/66136
Abstract: A method for manufacturing a PDMS device in accordance with an exemplary embodiment of the present invention surface treats the entire surface of a pattern with a thiol group (—SH), so that a hydrogel may be connected to the surface of the pattern by a covalent bond under ultraviolet rays. Therefore, a PDMS device manufactured by the above method has an advantage in that the shape thereof may be stably maintained without the swelling or desorption of a hydrogel even when an electrolyte is filled in a pattern.
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公开(公告)号:US20170313030A1
公开(公告)日:2017-11-02
申请号:US15270130
申请日:2016-09-20
Applicant: Hyundai Motor Company
Inventor: Won Ki Song
IPC: B32B15/14 , B32B5/02 , B29C65/00 , B29C65/70 , B62D29/00 , B32B3/26 , B29L31/30 , B29K705/00 , B29K105/06
CPC classification number: B32B15/14 , B29C65/54 , B29C66/02242 , B29C66/12221 , B29C66/303 , B29C66/304 , B29C66/346 , B29C66/72 , B29C66/7212 , B29C66/74283 , B29C70/72 , B29C70/745 , B29C70/845 , B29K2101/00 , B29K2105/06 , B29K2705/00 , B29K2705/12 , B29L2031/30 , B29L2031/3002 , B29L2031/3055 , B32B3/06 , B32B3/266 , B32B3/28 , B32B3/30 , B32B5/02 , B32B5/24 , B32B5/26 , B32B7/08 , B32B7/12 , B32B15/043 , B32B15/08 , B32B15/18 , B32B27/08 , B32B2260/023 , B32B2260/046 , B32B2262/0269 , B32B2262/101 , B32B2262/105 , B32B2262/106 , B32B2305/073 , B32B2305/34 , B32B2307/542 , B32B2311/30 , B32B2398/00 , B32B2605/00 , B32B2605/08 , B60Y2410/123 , B60Y2410/124 , B60Y2410/125 , B62D29/004 , B62D29/005 , Y10T428/24174 , Y10T428/24182 , Y10T428/2419 , Y10T428/24289 , Y10T428/24331 , Y10T428/24339 , Y10T428/24347
Abstract: A composite material with an insert-molded attachment steel is provided. The composite material includes a plurality of burring apertures, each of which has a flange in one direction on the attachment steel and is inserted between fibers. A resin is then introduced between the fibers in each burring aperture and external to the flange.
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公开(公告)号:US09751661B2
公开(公告)日:2017-09-05
申请号:US14137245
申请日:2013-12-20
Applicant: Pouch Pac Innovations, LLC
Inventor: R. Charles Murray
IPC: B65D35/02 , B29C65/02 , B65B3/02 , B29C65/00 , B65B3/04 , B32B27/34 , B65D75/00 , B32B27/36 , B32B15/09 , B32B27/32 , B65D75/58 , B65D30/08 , B65D37/00 , B32B15/085 , B32B15/088 , B32B15/20 , B32B27/08
CPC classification number: B65D35/02 , B29C65/02 , B29C66/71 , B29C66/72 , B29C66/74 , B31B70/844 , B31B2150/00 , B31B2160/10 , B32B15/085 , B32B15/088 , B32B15/09 , B32B15/20 , B32B27/08 , B32B27/32 , B32B27/327 , B32B27/34 , B32B27/36 , B32B2307/7244 , B32B2439/06 , B32B2439/46 , B65B3/02 , B65B3/04 , B65D31/02 , B65D37/00 , B65D75/008 , B65D75/5883 , Y10T428/1338 , Y10T428/1359 , Y10T428/31681 , Y10T428/31692
Abstract: A flexible pouch for packaging a product therein having a pouch panel formed of a material having a layer of polyethylene terephthalate, a layer of aluminum, a layer of nylon, and a layer of polyethylene. The layer of polyethylene terephthalate has a thickness of 12 to 15 microns, the layer aluminum has a thickness of 7 to 9 microns, the layer of nylon has a thickness of 12 to 18 microns, and the layer of polyethylene has a thickness of 70-200 microns.
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