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公开(公告)号:US2109676A
公开(公告)日:1938-03-01
申请号:US5962536
申请日:1936-01-17
Applicant: IND PROCESS CORP
Inventor: MINOR HENRY R
CPC classification number: C08J9/122 , B29C67/24 , C08J9/12 , C08J2201/032 , C08J2321/00 , C08L21/00
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公开(公告)号:US2086513A
公开(公告)日:1937-07-06
申请号:US71755034
申请日:1934-03-27
Applicant: RUBATEX PRODUCTS INC
Inventor: DUDLEY ROBERTS , SCOTT THOMAS A , PEEL FREDERICK W
CPC classification number: C08J9/12 , C08J2201/032 , C08J2321/00 , C08L21/00
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公开(公告)号:US12083717B2
公开(公告)日:2024-09-10
申请号:US17647019
申请日:2022-01-05
Applicant: NIKE, Inc.
Inventor: Yihua Chang , Lyle R. Hanson , Petr Khlyabich , Richard L. Watkins
IPC: A43B13/18 , A43D95/06 , B29C44/06 , B29C44/34 , B29C65/00 , B32B5/20 , B32B5/32 , B32B27/06 , B32B27/30 , B32B38/00 , C08J9/12
CPC classification number: B29C44/06 , A43B13/187 , A43D95/06 , B29C44/3403 , B29C66/439 , B32B5/20 , B32B5/32 , B32B27/065 , B32B27/306 , B32B38/00 , C08J9/122 , B32B2038/0084 , B32B2266/0278 , B32B2437/00 , B32B2437/02 , C08J2201/032 , C08J2203/06 , C08J2375/04
Abstract: Foamed articles including a foamed thermoplastic elastomeric material, methods of making the foamed articles, and methods for manufacturing articles of footwear, apparel, and athletic equipment incorporating such foamed articles are provided. In one aspect, a method for making a foamed article comprises placing an article comprising a foamable material and carbon dioxide in a vessel, maintaining the vessel at a first pressure and first temperature at which the carbon dioxide is a liquid and carbon dioxide is soluble in the foamable material, optionally exposing the infused article to a second temperature and second pressure, and subjecting the article to a third pressure and third temperature at which the infused carbon dioxide phase transitions to a gas, thereby expanding the foamable material into a foamed material and forming the foamed article.
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公开(公告)号:US20240002624A1
公开(公告)日:2024-01-04
申请号:US18465719
申请日:2023-09-12
Applicant: The Boeing Company
Inventor: Xiaoxi WANG , Gary E. GEORGESON , Jonathan A. SANTIAGO
CPC classification number: C08J9/236 , C08J9/18 , C08J2300/26 , C08J2201/032 , C08J2300/22
Abstract: A method of curing a composite part, including placing an uncured composite part on a mandrel, placing a plurality of expandable pellets on the uncured composite part, expanding the plurality of expandable pellets, applying a positive pressure to the uncured composite part, and curing the uncured composite part.
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公开(公告)号:US11787914B2
公开(公告)日:2023-10-17
申请号:US17445183
申请日:2021-08-16
Applicant: The Boeing Company
Inventor: Xiaoxi Wang , Gary E. Georgeson , Jonathan A. Santiago
CPC classification number: C08J9/236 , C08J9/18 , C08J2201/032 , C08J2300/22 , C08J2300/26
Abstract: A system for curing a composite part, includes a mandrel configured to receive and support the uncured composite part; a plurality of expandable pellets disposed on the uncured composite part; and a mold configured to hold the mandrel, the uncured composite part, and the plurality of expandable pellets, wherein the plurality of expandable pellets are configured to expand and apply a positive pressure to the uncured composite part according to a change in condition or triggering event, and wherein each of the plurality of expandable pellets includes a blowing agent, a polymer matrix configured to hold the blowing agent, and a flexible skin configured to encapsulate the polymer matrix and the blowing agent, wherein the flexible skin is at least partially permeable with respect to the blowing agent or a gas released by the blowing agent.
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公开(公告)号:US20180148559A1
公开(公告)日:2018-05-31
申请号:US15641988
申请日:2017-07-05
Applicant: Jean-Philippe Paul Marie Pierre Garancher
CPC classification number: C08J9/18 , C08J9/122 , C08J9/232 , C08J2201/032 , C08J2203/06 , C08J2367/04
Abstract: Methods of producing CO2-impregnated crystallisable polylactic acid resins and expanded polylactic acid foams.
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公开(公告)号:US20180009201A1
公开(公告)日:2018-01-11
申请号:US15203945
申请日:2016-07-07
Applicant: General Electric Company
Inventor: Aaron Todd Sellinger , Nicholas Joseph Kray
IPC: B32B27/08
CPC classification number: B32B27/08 , B32B2260/046 , B32B2264/10 , B32B2307/542 , B32B2307/56 , B32B2605/18 , C08J2201/032 , F01D5/282 , F01D21/045 , F04D29/388 , F05D2300/43 , F05D2300/612 , F05D2300/702 , Y02T50/672 , Y02T50/673
Abstract: An engine component for a turbine engine is provided. The engine component can include a substrate defining a surface, and an energy absorbing composite positioned on the surface of the substrate or within the substrate. The energy absorbing composite includes a shear thickening fluid distributed through a solid foamed synthetic polymer matrix.
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公开(公告)号:US09840605B2
公开(公告)日:2017-12-12
申请号:US15100956
申请日:2013-12-27
Applicant: DOW GLOBAL TECHNOLOGIES LLC , Yudong Qi , Yan Li , Shana P. Bunker , Stephane Costeux , Ted A. Morgan
Inventor: Yudong Qi , Yan Li , Shana P. Bunker , Stephane Costeux , Ted A. Morgan
IPC: C08J9/12 , C09K21/14 , C08F220/14 , C08J9/00 , C08F220/00
CPC classification number: C08J9/122 , C08F220/14 , C08F230/02 , C08J9/0061 , C08J9/12 , C08J2201/032 , C08J2203/06 , C08J2203/08 , C08J2205/042 , C08J2205/044 , C08J2325/12 , C08J2333/04 , C08J2333/10 , C08J2333/12 , C08J2343/00 , C08J2343/02 , C08J2425/12 , C08J2433/04 , C08J2433/12 , C08J2443/02 , C08L33/12 , C09K21/14 , C08L43/02
Abstract: Polymer foam bodies are made from phosphorus-containing thermoplastic random copolymers of a dialkyl (meth)acryloyloxyalkyl phosph(on)ate. Foam bodies made from these copolymers exhibit increased limiting oxygen indices and surprisingly have good properties. In certain embodiments, the phosphorus-containing thermoplastic copolymer is blended with one or more other polymers and formed into nanofoams.
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229.
公开(公告)号:US20170341281A1
公开(公告)日:2017-11-30
申请号:US15681994
申请日:2017-08-21
Applicant: DART CONTAINER CORPORATION
Inventor: GREGORY L. BRANCH
CPC classification number: B29C44/3453 , B29B11/14 , B29C44/04 , B29C44/0415 , B29C44/0461 , B29C44/0484 , B29C44/06 , B29C44/3446 , B65D81/3867 , B65D81/3874 , C08J9/122 , C08J2201/032
Abstract: The present invention is directed to a deep draw microcellularly foamed polymeric container comprising a polymeric sidewall integrally connected to a polymeric base along a bottom edge. The polymeric sidewall and base are contiguous with each other and define a shape of an open top container. The polymeric sidewall and base have a contiguous inner microcellular foam structure (having average cell diameters ranging from about 5 to about 100 microns) surrounded by a smooth outer skin layer integrally connected therewith. The polymeric sidewall defines a container height and a top opening, wherein the top opening defines a top opening width, and wherein the polymeric base defines a container base width, and wherein the area defined by the top opening is greater than the area defined by the polymeric base, and wherein the ratio of the container height (h) to the top opening width (w) is greater than about 1:1 (h:w).
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230.
公开(公告)号:US20170275432A1
公开(公告)日:2017-09-28
申请号:US15512222
申请日:2015-08-31
Applicant: SEKISUI PLASTICS CO., LTD.
Inventor: Hiroki OWAKI
IPC: C08J9/18 , C08J9/228 , C08F255/02 , C08L25/06 , C08L23/06
CPC classification number: C08J9/18 , B60R13/02 , C08F255/02 , C08J9/0061 , C08J9/141 , C08J9/228 , C08J2201/032 , C08J2203/14 , C08J2203/182 , C08J2323/02 , C08J2323/04 , C08J2325/06 , C08J2423/02 , C08J2423/04 , C08J2425/06 , C08L23/06 , C08L23/0815 , C08L25/06 , C08F112/08 , C08F2/22 , C08L23/0869
Abstract: Composite resin particles comprising 50 to 800 parts by mass of a polystyrene-based resin with respect to 100 parts by mass of a polyolefin-based resin, wherein: when transmission electron microscope (TEM) images obtained by photographing cross-sections of the composite resin particles using a TEM at a magnification of 1,000 are subjected to a binarization processing and areas in the obtained binarized images which correspond to a cross-sectional area of 437.584 μm2 of the composite resin particles are subjected to image analysis, the polystyrene-based resin satisfies the following requirements: (1) the number of dispersed particles is 180 or more; (2) the maximum of the areas of dispersed particles is 200 μm2 or less; and (3) the coefficient of variation in dispersion is 100% or more, and the composite resin particles exhibit an inner morphology that includes a mixture of sea-island structure regions and co-continuous structure regions.
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