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公开(公告)号:US12089327B2
公开(公告)日:2024-09-10
申请号:US18046280
申请日:2022-10-13
Applicant: KURARAY CO., LTD.
Inventor: Kikuo Arimoto , Takafumi Sawada , Yuuichi Banba , Shuji Nagano
IPC: H05K1/03 , B32B15/04 , B32B15/08 , B32B15/18 , B32B15/20 , C08J5/18 , C09K19/00 , C09K19/02 , C23C14/20 , H05K1/09 , H05K3/02
CPC classification number: H05K1/0353 , B32B15/04 , B32B15/043 , B32B15/08 , B32B15/18 , B32B15/20 , C08J5/18 , C09K19/00 , C09K19/02 , C23C14/20 , C23C14/205 , H05K1/0313 , H05K1/09 , H05K3/022 , H05K1/0393 , H05K2201/0129 , H05K2201/0141 , H05K2201/0338 , Y10T428/12556 , Y10T428/12569 , Y10T428/1266 , Y10T428/12667 , Y10T428/12708 , Y10T428/12715 , Y10T428/12722 , Y10T428/12736 , Y10T428/12743 , Y10T428/1275 , Y10T428/12757 , Y10T428/12785 , Y10T428/12806 , Y10T428/12819 , Y10T428/12826 , Y10T428/12847 , Y10T428/12854 , Y10T428/12861 , Y10T428/12868 , Y10T428/12875 , Y10T428/12882 , Y10T428/12889 , Y10T428/12896 , Y10T428/12903 , Y10T428/1291 , Y10T428/12917 , Y10T428/12931 , Y10T428/12937 , Y10T428/12944 , Y10T428/12951 , Y10T428/26 , Y10T428/31678
Abstract: Provide is a metal-coated liquid-crystal polymer film that is suitable for microcircuit processing and capable of reducing the transmission loss of circuits. The metal-coated liquid-crystal polymer film comprising: a polymer film comprising a polymer film main body capable of forming an optically anisotropic melt phase; a first metal layer layered on at least one side of the polymer film main body; and a second metal layer layered on the first metal layer, wherein in an analysis of oxygen concentration in a thickness direction using XPS, the average oxygen concentration of the first metal layer is 2.5 atom % or less.
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公开(公告)号:US11718916B2
公开(公告)日:2023-08-08
申请号:US17750660
申请日:2022-05-23
Applicant: C. Uyemura & Co., Ltd.
Inventor: Shoji Iguchi , Akio Itamura , Shoichi Fukui , Yukinori Oda , Masaaki Sato , Yoshihito Il , Hiroki Okubo
IPC: C23C18/32 , C23C18/00 , C23C30/00 , C22C19/00 , C22C19/07 , B32B15/04 , C23C18/36 , C23C18/34 , C23C18/54 , C23C18/50 , C23C18/48 , C23C18/18
CPC classification number: C23C18/32 , B32B15/04 , B32B15/043 , C22C19/00 , C22C19/07 , C23C18/34 , C23C18/36 , C23C18/48 , C23C18/50 , C23C18/54 , C23C30/00 , C23C30/005 , C23C18/1844 , Y10T428/1284 , Y10T428/1291 , Y10T428/12931 , Y10T428/12937 , Y10T428/12944 , Y10T428/2495 , Y10T428/24967 , Y10T428/24975 , Y10T428/265
Abstract: An object of the present invention is to provide a new electroless plating film which can prevent the diffusion of molten solder to a metal material constituting a conductor. The present invention is an electroless Co—W plating film, wherein content of W is in an amount of 35 to 58 mass % and a thickness of the film is 0.05 μm or more.
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公开(公告)号:US11713513B2
公开(公告)日:2023-08-01
申请号:US16968087
申请日:2019-02-06
Applicant: NIPPON STEEL CORPORATION
Inventor: Mamoru Saito , Takehiro Takahashi , Kiyokazu Ishizuka
IPC: C25D5/12 , H01M50/124 , B32B15/01 , C22C19/03 , C25D5/50 , C25D7/00 , H01M50/133 , H01M50/128 , H01M50/119
CPC classification number: C25D5/12 , B32B15/015 , C22C19/03 , C25D5/50 , C25D7/00 , H01M50/119 , H01M50/124 , H01M50/128 , H01M50/133 , Y10T428/12931 , Y10T428/12937
Abstract: To provide a surface-treated steel sheet for battery containers excellent in workability while maintaining battery characteristics and liquid leakage resistance, and a manufacturing method thereof. A surface-treated steel sheet for battery containers according to the present invention includes a Ni—Co—Fe-based diffusion alloy plating layer on at least one surface of a base steel sheet, in which the diffusion alloy plating layer is consisted of a Ni—Fe alloy layer and a Ni—Co—Fe alloy layer, which are arranged sequentially from the base steel sheet side, the diffusion alloy plating layer has a Ni coating weight within a range of 3.0 g/m2 or more and less than 8.74 g/m2 and a Co coating weight within a range of 0.26 g/m2 or more and 1.6 g/m2 or less, with a total of the Ni coating weight and the Co coating weight being less than 9.0 g/m2, when a surface of the diffusion alloy plating layer is analyzed by an X-ray photoelectron spectroscopy, Co: 19.5 to 60%, Fe: 0.5 to 30%, and Co+Fe: 20 to 70% in atom % are satisfied, and a thickness of the Ni—Fe alloy layer is within a range of 0.3 to 1.3 μm.
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公开(公告)号:US20190186034A1
公开(公告)日:2019-06-20
申请号:US16107222
申请日:2018-08-21
Applicant: USC, LLC
Inventor: Robert Z. Reath , Amitava Datta , John D. Carpenter
CPC classification number: C25D3/562 , C25D1/00 , C25D15/00 , C25D15/02 , Y10S428/935 , Y10T428/12576 , Y10T428/1266 , Y10T428/12861 , Y10T428/12931 , Y10T428/25 , Y10T428/256 , Y10T428/259
Abstract: The invention provides a method and system for electrolytically coating an article. The method includes providing an article to be coated and disposing the article in an electrolytic cell. The cell includes an anode, a cathode in operable communication with the article, and an electrolyte bath. During electrolysis, the electrolyte bath comprises cobalt ions, phosphorous acid, and tribological particles selected from the group consisting of refractory materials, solid lubricants and mixtures thereof dispersed therein. The method further includes applying steady direct electric current through the anode, the electrolyte bath and the cathode to coat the article with cobalt, phosphorous and the tribological particles. An improved composition of matter is also provided that may be used as a coating, or the composition may be electroformed on a mandrel to form an article made from the composition of matter.
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公开(公告)号:US20180245194A1
公开(公告)日:2018-08-30
申请号:US15965839
申请日:2018-04-27
Applicant: GENERAL ELECTRIC COMPANY
Inventor: Andrew Joseph Detor , Leonardo Ajdelsztajn , Thomas Michael Bigelow , Richard Didomizio , Andrew William Emge , James Anthony Ruud , Michael James Weimer
IPC: C23C4/073 , F01D25/00 , F01D5/08 , C23C4/134 , C23C4/123 , C23C4/129 , C22C30/00 , C22C19/07 , C22F1/10 , B22F9/16 , B22F9/04
CPC classification number: C23C4/073 , B22F1/0085 , B22F3/115 , B22F5/009 , B22F7/08 , B22F9/04 , B22F9/16 , B22F2301/052 , B22F2301/15 , B22F2301/20 , B22F2301/45 , C22C1/0433 , C22C19/00 , C22C19/07 , C22C30/00 , C22F1/10 , C23C4/123 , C23C4/129 , C23C4/134 , C23C24/04 , F01D5/08 , F01D25/007 , F05D2230/90 , F05D2240/24 , F05D2300/175 , F05D2300/177 , F05D2300/611 , Y10T428/12931 , Y10T428/12944
Abstract: An article includes a substrate comprising a precipitate-strengthened alloy and a coating disposed over the substrate. The alloy comprises a) a population of gamma-prime precipitates, the population having a multimodal size distribution with at least one mode corresponding to a size of less than about 100 nanometers; or b) a population of gamma-double-prime precipitates having a median size less than about 300 nanometers. The coating comprises at least two elements, and further comprises a plurality of prior particles. At least a portion of the coating is substantially free of rapid solidification artifacts. Methods for fabricating the article and for processing powder useful for fabricating the article are also provided.
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公开(公告)号:US20180230588A1
公开(公告)日:2018-08-16
申请号:US15945033
申请日:2018-04-04
Applicant: Mo-How Herman Shen
Inventor: Mo-How Herman Shen
CPC classification number: C23C14/16 , B32B15/01 , B32B15/043 , B32B2255/06 , B32B2603/00 , C23C14/0641 , C23C14/0664 , C23C14/14 , C23C14/24 , C23C14/28 , C23C14/30 , C23C14/54 , C23C24/04 , C23C28/321 , C23C28/34 , F01D5/288 , F03D1/0675 , F04D29/023 , F04D29/324 , F04D29/668 , F05D2230/90 , F05D2300/507 , F05D2300/611 , Y10T428/12576 , Y10T428/12931 , Y10T428/12986
Abstract: A method to increase the damping of a substrate using a face-centered cubic damping material foil containing voids.
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公开(公告)号:US20180195159A1
公开(公告)日:2018-07-12
申请号:US15914389
申请日:2018-03-07
Applicant: POSCO
Inventor: Il-Ryoung SOHN , Jong-Sang KIM , Joong-Chul PARK , Yeol-Rae CHO , Jin-Keun OH , Han-Gu CHO , Bong-Hoon CHUNG , Jong-Seog LEE
CPC classification number: C23C2/28 , C22C38/001 , C22C38/04 , C23C2/02 , C23C2/06 , C23C2/40 , C23C8/10 , Y10T428/12799 , Y10T428/12917 , Y10T428/12924 , Y10T428/12931 , Y10T428/12937 , Y10T428/12951 , Y10T428/12958
Abstract: Provided is a method of manufacturing a zinc-plated steel sheet. The method includes: coating a metal on the steel sheet on a steel sheet; annealing the metal coated steel sheet; and zinc plating the annealed steel sheet by dipping in a molten zinc plating bath. Further provided is a method of manufacturing a hot-press part including: coating a metal on the steel sheet on a steel sheet; annealing the metal coated steel sheet; zinc plating the annealed steel sheet by dipping in a molten zinc plating bath; heating the zinc-plated steel sheet; and press forming the heated steel sheet.
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公开(公告)号:US10017844B2
公开(公告)日:2018-07-10
申请号:US14974755
申请日:2015-12-18
Applicant: GENERAL ELECTRIC COMPANY
Inventor: Andrew Joseph Detor , Leonardo Ajdelsztajn , Thomas Michael Bigelow , Richard Didomizio , Andrew William Emge , James Anthony Ruud , Michael James Weimer
IPC: B32B15/00 , C23C4/073 , B22F9/04 , B22F9/16 , C22F1/10 , C22C19/07 , C22C30/00 , C23C4/129 , C23C4/123 , C23C4/134 , F01D5/08 , F01D25/00
CPC classification number: C23C4/073 , B22F1/0085 , B22F3/115 , B22F5/009 , B22F7/08 , B22F9/04 , B22F9/16 , B22F2301/052 , B22F2301/15 , B22F2301/20 , B22F2301/45 , C22C1/0433 , C22C19/00 , C22C19/07 , C22C30/00 , C22F1/10 , C23C4/123 , C23C4/129 , C23C4/134 , C23C24/04 , F01D5/08 , F01D25/007 , F05D2230/90 , F05D2240/24 , F05D2300/175 , F05D2300/177 , F05D2300/611 , Y10T428/12931 , Y10T428/12944
Abstract: An article includes a substrate comprising a precipitate-strengthened alloy and a coating disposed over the substrate. The alloy comprises a) a population of gamma-prime precipitates, the population having a multimodal size distribution with at least one mode corresponding to a size of less than about 100 nanometers; or b) a population of gamma-double-prime precipitates having a median size less than about 300 nanometers. The coating comprises at least two elements, and further comprises a plurality of prior particles. At least a portion of the coating is substantially free of rapid solidification artifacts. Methods for fabricating the article and for processing powder useful for fabricating the article are also provided.
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公开(公告)号:US09945036B2
公开(公告)日:2018-04-17
申请号:US13053378
申请日:2011-03-22
Applicant: Peter Joel Meschter , Raymond Grant Rowe
Inventor: Peter Joel Meschter , Raymond Grant Rowe
IPC: B32B15/04 , B32B9/00 , B32B18/00 , F01D5/28 , C23C28/04 , C04B35/48 , C04B41/50 , C04B35/50 , C04B41/00 , C04B41/52 , C04B41/89 , C23C28/00
CPC classification number: C23C28/042 , B32B9/00 , B32B9/005 , B32B15/04 , B32B18/00 , C04B35/48 , C04B35/50 , C04B41/009 , C04B41/5044 , C04B41/52 , C04B41/89 , C23C28/3215 , C23C28/34 , C23C28/3455 , F01D5/28 , F01D5/284 , F01D5/288 , F05D2260/95 , F05D2300/2118 , Y02T50/67 , Y02T50/672 , Y10T428/12611 , Y10T428/12618 , Y10T428/12931 , Y10T428/12944 , Y10T428/12951 , Y10T428/12972 , Y10T428/31678 , C04B35/565 , C04B35/806 , C04B35/584 , C04B35/58085 , C04B41/4527 , C04B41/5096 , C04B41/5024 , C04B41/5037 , C04B41/5031 , C04B41/5042 , C04B41/522 , C04B41/455 , C04B41/5045 , C04B41/5048 , C04B41/5027
Abstract: A coating system on a superalloy or silicon-containing substrate of an article exposed to high temperatures. The coating system includes a coating layer that overlies the substrate and is susceptible to hot corrosion promoted by molten salt impurities. A corrosion barrier coating overlies the coating layer and contains at least one rare-earth oxide-containing compound that reacts with the molten salt impurities to form a dense, protective byproduct barrier layer.
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公开(公告)号:US09929187B2
公开(公告)日:2018-03-27
申请号:US14296800
申请日:2014-06-05
Applicant: Shuwei Sun , Francois-Charles Dary , Marc Abouaf , Patrick Hogan , Qi Zhang
Inventor: Shuwei Sun , Francois-Charles Dary , Marc Abouaf , Patrick Hogan , Qi Zhang
IPC: H01B1/02 , H01L27/12 , B81C1/00 , C22F1/04 , C22F1/00 , C22F1/08 , C22F1/14 , C21D1/00 , C21D9/00 , H01L29/66 , G06F3/041 , H01L29/49 , H01L23/532 , H01L29/786 , G06F3/044
CPC classification number: H01L27/1244 , B81C1/00 , B81C1/00031 , B81C1/00404 , B81C1/00523 , B81C1/00547 , C21D1/00 , C21D9/00 , C21D2201/00 , C21D2211/00 , C21D2251/00 , C22F1/00 , C22F1/04 , C22F1/08 , C22F1/14 , G06F3/041 , G06F3/0412 , G06F3/044 , G06F2203/04103 , H01B1/026 , H01L23/53238 , H01L29/4908 , H01L29/6675 , H01L29/78603 , H01L29/78666 , H01L2924/0002 , Y10T428/12611 , Y10T428/1266 , Y10T428/12681 , Y10T428/12687 , Y10T428/12694 , Y10T428/12708 , Y10T428/12715 , Y10T428/12722 , Y10T428/12743 , Y10T428/1275 , Y10T428/12806 , Y10T428/12812 , Y10T428/12819 , Y10T428/12826 , Y10T428/1284 , Y10T428/12847 , Y10T428/12861 , Y10T428/12868 , Y10T428/12875 , Y10T428/12882 , Y10T428/12889 , Y10T428/12896 , Y10T428/12903 , Y10T428/1291 , Y10T428/12931 , H01L2924/00
Abstract: In various embodiments, electronic devices such as touch-panel displays incorporate interconnects featuring a conductor layer and, disposed above the conductor layer, a capping layer comprising an alloy of Cu and one or more refractory metal elements selected from the group consisting of Ta, Nb, Mo, W, Zr, Hf, Re, Os, Ru, Rh, Ti, V, Cr, and Ni.
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