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公开(公告)号:US20240117170A1
公开(公告)日:2024-04-11
申请号:US17768969
申请日:2020-10-12
Applicant: SABIC GLOBAL TECHNOLOGIES B.V.
Inventor: Chen WAN , Stephen TAYLOR , Bing ZHOU , Jeffrey ESHENAUR , Robert Russell GALLUCCI , Jianhua XU
CPC classification number: C08L25/12 , B29C45/0001 , C08K3/22 , C23C18/16 , C08K2003/2206 , C08K2003/222 , C08K2003/2296 , C08K2201/005 , C08K2201/012 , C08L2205/035 , C08L2207/53
Abstract: A composition for electroless plating comprises: from 9 to 29 weight percent, 9.7 to 29 weight percent, or 10 to 29 weight percent, of a first graft rubber copolymer which comprises the polymerized form of at least one conjugated diene monomer and at least one monovinyl aromatic monomer, from 70 to 90 weight percent, preferably 70-89.7 weight percent, more preferably 70 to 85 weight percent, of ungrafted styrenic polymer, from 0.1 to 10 weight percent of a core/shell diene-based rubber having particle size of 100 to 500 nanometers (nm), one or more of a stabilizer and/or antioxidant in total amount of from 0.1 to 5 weight percent, a fatty acid or a salt of fatty acid in an amount of from 0.1 to 2 weight percent, 0 to 5 weight percent of a mold release agent, 0 to 1 weight percent of a metal oxide, 0 to 3 weight percent of a lubricant, and 0 to 20 weight percent of polycarbonate wherein weight percent and ppm are based on total weight of the composition. The composition can be formed into an article having a metal coating electroless plated on the composition.
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公开(公告)号:US20180265985A1
公开(公告)日:2018-09-20
申请号:US15920391
申请日:2018-03-13
Applicant: Raytheon Company
Inventor: Curtis B. Carlsten , Jonathan Murrow , Erik F. Item
CPC classification number: C23C18/1616 , B32B37/16 , B63B3/16 , B64C1/00 , B64C2001/0072 , C23C18/08 , C23C18/16 , C23C18/1601 , C23C18/1603 , C23C18/1614 , C23C18/1633 , C23C18/1639 , C23C18/1641 , F42B10/143 , F42B12/76
Abstract: A composite structural component is disclosed. The composite structural component can include a lattice structure, a casing disposed about at least a portion of the lattice structure, and a skin adhered to a surface of the casing. The lattice structure and the casing can be formed of a polymeric material and the skin can be formed of a metallic material. A method of manufacturing a composite structural component is disclosed. The method can include creating a casing of a polymeric material and creating a lattice structure of a polymeric material disposed about at least a portion of the casing. The method can include sealing the porosity of the casing and lattice structure. The method can include adhering a skin of a metallic material to at least a portion of the casing. At least one of creating a lattice structure and creating a casing comprises utilizing an additive manufacturing process.
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公开(公告)号:US09982144B2
公开(公告)日:2018-05-29
申请号:US15100588
申请日:2014-12-19
Inventor: Kensuke Kageyama
IPC: H01B1/02 , C09D5/24 , C09D11/52 , C09J9/02 , C09J11/00 , C09J201/00 , C23C18/16 , C23C18/31 , C23C18/44 , H01B1/22 , C23C18/42 , C23C18/52 , C08J3/12 , C08K9/10 , C09D163/00 , C09J11/06 , C09J11/08 , C09J7/00 , C09J11/04
CPC classification number: C09D5/24 , C08J3/128 , C08J2325/06 , C08J2333/00 , C08J2361/06 , C08K9/10 , C08K2201/001 , C09D7/40 , C09D7/62 , C09D7/63 , C09D7/65 , C09D7/68 , C09D7/69 , C09D7/70 , C09D11/52 , C09D163/00 , C09J7/00 , C09J7/10 , C09J9/02 , C09J11/00 , C09J11/04 , C09J11/06 , C09J11/08 , C09J201/00 , C09J2203/318 , C23C18/16 , C23C18/1633 , C23C18/1641 , C23C18/165 , C23C18/31 , C23C18/42 , C23C18/44 , C23C18/52 , H01B1/02 , H01B1/22
Abstract: Provided are highly reliable silver-coated conductive particles, which are prevented from an occurrence of migration, the silver-coated conductive particles in which: a tin layer is formed on a surface of each spherical base particle, and a silver plating layer is formed on a surface of the tin layer, and a surface of the silver plating layer is coated with a water repellent layer: the water repellent layer includes an organic sulfur compound that is mainly composed of a sulfide compound or a surfactant such as polyoxyethylene ethers: and a molded body that is formed by pressing the silver-coated conductive particles at a pressure of 14.7 MPa has a contact angle with water of 125 degree or more.
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公开(公告)号:US09974170B1
公开(公告)日:2018-05-15
申请号:US15146601
申请日:2016-05-04
Applicant: Apple Inc.
Inventor: Daniel D. Sunshine , Daniel A. Podhajny , Kathryn P. Crews , Kirk M. Mayer , John Arthur Maasberg
CPC classification number: H05K1/038 , C23C18/16 , C23C18/1633 , C25D7/0607 , H01B13/0026 , H01B13/0036 , H05K3/103 , H05K2201/0281
Abstract: Strands of material may be intertwined using weaving techniques, knitting techniques, non-woven or entanglement techniques, or braiding techniques. Fabric that is formed from the strands of material may be used in forming a fabric-based item. The fabric based item may include electrical components. The strands may include conductive strands that form signal paths. The signal paths can carry electrical signals associated with operation of the electrical components. Each strand may have an elongated core and a coating. Strands may also include intermediate layers between the cores and coatings. The cores, intermediate layers, and coatings may be formed from polymer without conductive filler, polymer with conductive filler, and/or metal. A polymer core may be provided with recesses to help retain subsequently deposited layers such as a metal coating layer. The recesses may be grooves that extend along the longitudinal axis of the core.
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公开(公告)号:US20180106250A1
公开(公告)日:2018-04-19
申请号:US15843829
申请日:2017-12-15
Applicant: General Electric Company
Inventor: Lawrence Bernard Kool , Dennis Michael Gray
IPC: F04B53/14 , C23C18/32 , C23C4/06 , B05D1/02 , C09D5/10 , E21B43/12 , F04B19/22 , F04B47/02 , F04B53/16 , C23C4/129 , F04B47/00 , F04D7/04 , C23C28/00 , C23C18/16
CPC classification number: F04B53/14 , B05D1/02 , C09D5/10 , C23C4/06 , C23C4/129 , C23C18/16 , C23C18/1662 , C23C18/1692 , C23C18/32 , C23C28/324 , C23C28/347 , E21B43/127 , F04B19/22 , F04B47/00 , F04B47/022 , F04B49/22 , F04B53/16 , F04D7/04 , F05C2201/0406 , F05C2201/0466 , F05C2203/04 , F05C2203/0826 , F05C2211/00 , F05C2253/12
Abstract: A pump for an oil and gas well includes a barrel with a surface configured to contact oil and gas well fluid. The pump further includes a first coating formed on at least a portion of the barrel surface. The first coating includes a combination of diamond particles and a composition including nickel and phosphorous. The pump also includes a plunger with a surface configured to contact oil and gas well fluid. The pump additionally includes a second coating formed on at least a portion of the plunger surface. The second coating includes a combination of tungsten carbide particles and a composition including cobalt and chromium.
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公开(公告)号:US09925761B2
公开(公告)日:2018-03-27
申请号:US15158678
申请日:2016-05-19
Applicant: Eastman Kodak Company
Inventor: Timothy John Young
CPC classification number: B41F21/00 , B05C3/125 , B41F5/24 , B65H23/24 , B65H23/32 , B65H2301/5114 , B65H2406/111 , B65H2406/112 , B65H2406/20 , B65H2801/61 , C23C18/16 , C23C18/1619 , C23C18/163
Abstract: A non-contact web guide includes a wall having a curved exterior surface and a hollow interior containing a pressurized liquid. A first row of liquid ejection holes is provided in proximity to the web guide entry position having axes that are inclined toward a downstream direction, and a second row of liquid ejection holes is provided in proximity to the web guide exit position having axes that are inclined toward an upstream direction. An intermediate array of liquid ejection holes is optionally provided. The pressurized liquid flows through the liquid ejection holes to force the web of media away from the bearing surface of the web guide. This configuration of liquid ejection holes provides the advantage that stable web guidance is achieved at low liquid flow rates.
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公开(公告)号:US09920429B2
公开(公告)日:2018-03-20
申请号:US14557286
申请日:2014-12-01
Applicant: Raytheon Company
Inventor: Curtis B. Carlsten , Jonathan Murrow , Erik F. Item
CPC classification number: C23C18/1616 , B32B37/16 , B63B3/16 , B64C1/00 , B64C2001/0072 , C23C18/08 , C23C18/16 , C23C18/1601 , C23C18/1603 , C23C18/1614 , C23C18/1633 , C23C18/1639 , C23C18/1641 , F42B10/143 , F42B12/76
Abstract: A composite structural component is disclosed. The composite structural component can include a lattice structure, a casing disposed about at least a portion of the lattice structure, and a skin adhered to a surface of the casing. The lattice structure and the casing can be formed of a polymeric material and the skin can be formed of a metallic material. A method of manufacturing a composite structural component is disclosed. The method can include creating a casing of a polymeric material and creating a lattice structure of a polymeric material disposed about at least a portion of the casing. The method can include sealing the porosity of the casing and lattice structure. The method can include adhering a skin of a metallic material to at least a portion of the casing. At least one of creating a lattice structure and creating a casing comprises utilizing an additive manufacturing process.
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公开(公告)号:US20180076275A1
公开(公告)日:2018-03-15
申请号:US15817858
申请日:2017-11-20
Applicant: International Business Machines Corporation
Inventor: Hariklia Deligianni , William J. Gallagher , Andrew J. Kellock , Eugene J. O'Sullivan , Lubomyr T. Romankiw , Naigang Wang
IPC: H01L49/02 , H01F27/28 , H01F27/24 , H01F41/26 , H01L23/522 , C23C18/16 , H01F5/00 , H01L21/288 , H01F1/04 , H01F27/00 , H01F41/04
CPC classification number: H01L28/10 , C23C18/16 , C23C18/1605 , C23C18/165 , C23C18/1651 , C23C18/1673 , C23C18/168 , C23C18/1694 , C23C18/1696 , C23C18/1831 , C23C18/50 , H01F1/04 , H01F5/00 , H01F27/00 , H01F27/24 , H01F27/28 , H01F41/046 , H01F41/26 , H01L21/288 , H01L21/2885 , H01L23/5227
Abstract: An on-chip magnetic structure structure includes a magnetic material comprising cobalt in a range from about 80 to about 90 atomic % (at. %) based on the total number of atoms of the magnetic material, tungsten in a range from about 4 to about 9 at. % based on the total number of atoms of the magnetic material, phosphorous in a range from about 7 to about 15 at. % based on the total number of atoms of the magnetic material, and palladium substantially dispersed throughout the magnetic material.
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公开(公告)号:US20170167483A1
公开(公告)日:2017-06-15
申请号:US14966841
申请日:2015-12-11
Applicant: General Electric Company
Inventor: Lawrence Bernard Kool , Dennis Michael Gray
CPC classification number: F04B53/14 , B05D1/02 , C09D5/10 , C23C4/06 , C23C4/129 , C23C18/16 , C23C18/1662 , C23C18/1692 , C23C18/32 , C23C28/324 , C23C28/347 , E21B43/127 , F04B19/22 , F04B47/00 , F04B47/022 , F04B49/22 , F04B53/16 , F04D7/04 , F05C2201/0406 , F05C2201/0466 , F05C2203/04 , F05C2203/0826 , F05C2211/00 , F05C2253/12
Abstract: A pump for an oil and gas well includes a barrel with a surface configured to contact oil and gas well fluid. The pump further includes a first coating formed on at least a portion of the barrel surface. The first coating includes a combination of diamond particles and a composition including nickel and phosphorous. The pump also includes a plunger with a surface configured to contact oil and gas well fluid. The pump additionally includes a second coating formed on at least a portion of the plunger surface. The second coating includes a combination of tungsten carbide particles and a composition including cobalt and chromium.
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公开(公告)号:US20160265114A1
公开(公告)日:2016-09-15
申请号:US15163419
申请日:2016-05-24
Applicant: TOYO KOHAN CO., LTD.
Inventor: Nobuaki MUKAI
IPC: C23C18/18 , B32B15/01 , H01M8/0228 , C23C18/44
CPC classification number: C23C18/1831 , B32B15/01 , B32B15/017 , B32B15/018 , B32B15/043 , C22C5/02 , C22C19/00 , C22C21/06 , C23C18/16 , C23C18/1633 , C23C18/165 , C23C18/1651 , C23C18/1653 , C23C18/32 , C23C18/34 , C23C18/36 , C23C18/38 , C23C18/40 , C23C18/42 , C23C18/44 , C23C18/48 , C23C18/50 , C23C18/52 , C23C18/54 , C23C28/00 , C23C28/02 , C23C28/021 , C23C30/00 , C23C30/005 , H01M8/0228 , Y10T428/12708 , Y10T428/12715 , Y10T428/12722 , Y10T428/12861 , Y10T428/12868 , Y10T428/12875 , Y10T428/12882 , Y10T428/12889 , Y10T428/12896 , Y10T428/12903 , Y10T428/1291 , Y10T428/12917 , Y10T428/12924 , Y10T428/12931 , Y10T428/12937 , Y10T428/12944 , Y10T428/12972 , Y10T428/2495 , Y10T428/24967 , Y10T428/24975
Abstract: A method of electroless gold plating includes a step of forming an underlying alloy layer on a base material and a step of forming a gold plate layer directly on the underlying alloy layer by electroless reduction plating using a cyanide-free gold plating bath. The underlying alloy layer is formed of an M1-M2-M3 alloy, where M1 is at least one element selected from Ni, Fe, Co, Cu, Zn, where Sn, M2 is at least one element selected from Pd, Re, Pt, Rh, Ag and where Ru, and M3 is at least one element selected from P and B.
Abstract translation: 无电镀金的方法包括在基材上形成下面的合金层的步骤,以及通过使用无氰镀金浴的无电还原电镀在底层合金层上直接形成金板层的步骤。 下面的合金层由M1-M2-M3合金形成,其中M1是选自Ni,Fe,Co,Cu,Zn中的至少一种元素,其中Sn,M2是选自Pd,Re,Pt中的至少一种元素 ,Rh,Ag,其中Ru和M3是选自P和B中的至少一种元素。