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公开(公告)号:US20240209511A1
公开(公告)日:2024-06-27
申请号:US18390049
申请日:2023-12-20
发明人: Abdulla Al Shehhi , Monserrat Gutierrez Munoz , Nesma Aboulkhair , Federico Bosio , Chinmay Phutela , Afra Saeed Mubarak Jezaie AlKetbi , Nitul Rajput
CPC分类号: C23C18/1639 , C23C18/1692 , C23C18/1893 , C23C18/31 , B82Y40/00
摘要: The present disclosure describes a method of a preparing a metal-plated boron nitride nanomaterial, which may perform a surface treatment on the boron nitride nanomaterial to form a treated boron nitride nanomaterial. The method may contact the treated boron nitride nanomaterial with an activating solution to form an activated boron nitride nanomaterial. The method may contact the activated boron nitride nanomaterial with an accelerator solution to form an accelerated boron nitride nanomaterial. The method may contact the accelerated boron nitride nanomaterial with a plating solution comprising a metal to form a plated boron nitride nanomaterial. The method may dry the plated boron nitride nanomaterial.
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公开(公告)号:US20230193468A1
公开(公告)日:2023-06-22
申请号:US16771408
申请日:2018-10-30
申请人: JCU CORPORATION
CPC分类号: C23C18/1216 , C23C18/1646 , C23C18/1692 , C23C18/1295
摘要: A coating agent for forming an oxide film; a method for producing an oxide film; and a method for producing a metal-plated structure, where the stability of the coating agent can be enhanced, and an oxide film which can be plated and has high adhesion to a substrate can be easily formed. The coating agent for forming an oxide film is a liquid coating agent, essentially contains titanium atoms, and optionally contains silicon atoms and copper atoms, wherein the ratio of the sum of the titanium atoms and copper atoms to the silicon atoms is 1:0-3:2. The method for producing an oxide film includes applying the coating agent to a substrate and heating to form an oxide film. The method for producing a metal-plated structure includes: a metal-film-forming step for forming a metal film on the oxide film; and a baking step for baking the metal film.
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公开(公告)号:US10053746B1
公开(公告)日:2018-08-21
申请号:US15339472
申请日:2016-10-31
申请人: Russell B Jones , Robert J. Wright
发明人: Russell B Jones , Robert J. Wright
IPC分类号: C23C14/32 , C21D9/00 , B23P6/00 , C23F17/00 , C23F4/00 , C23C14/02 , C23C14/22 , C23C18/50 , C23C18/18 , B24B1/00 , F16D41/06
CPC分类号: C21D9/0068 , B23P6/00 , B24B1/00 , C23C14/022 , C23C14/028 , C23C14/0641 , C23C14/325 , C23C14/5886 , C23C18/1605 , C23C18/1692 , C23C18/1806 , C23C18/1844 , C23C18/50 , F16D2041/0603 , F16D2250/0038 , F16D2250/0046
摘要: A method of repairing a worn carburized surface on a sprag clutch comprising the steps of: grinding the worn carburized surface of the sprag clutch to prepare the surface for metallurgical bonding; place the worn carburized surface in a PVD Cathodic Arc chamber; preheat the worn carburized surface to remove moisture and provide for a good metallurgical bonding surface; reverse sputter clean the surface to remove any surface oxide; apply a first coating layer using the PVD process to a maximum thickness; change the coating macro topology by polishing the coated surface; apply a second coating layer using the PVD process to a maximum thickness; and, grind or polish the coating to a desired dimension.
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4.
公开(公告)号:US20180171858A1
公开(公告)日:2018-06-21
申请号:US15897393
申请日:2018-02-15
申请人: Hille & Müller GmbH
IPC分类号: F01N13/16 , C21D1/26 , F01N3/28 , C25D9/12 , C25D5/12 , C25D5/50 , C21D9/52 , C22F1/04 , C25D3/12 , C25D5/36 , C25D5/44 , F02M37/00 , C25D9/10
CPC分类号: F01N13/16 , B32B15/013 , B32B15/015 , B32B15/017 , B32B15/04 , B32B15/043 , B32B15/18 , B32B15/20 , C21D1/26 , C21D9/52 , C22F1/04 , C23C18/04 , C23C18/08 , C23C18/1204 , C23C18/1225 , C23C18/1295 , C23C18/1637 , C23C18/1646 , C23C18/165 , C23C18/1653 , C23C18/1692 , C23C18/31 , C23C18/32 , C23C18/34 , C23C18/36 , C23C18/50 , C23C18/52 , C23C18/54 , C23C28/021 , C23C28/023 , C23C28/34 , C23C30/00 , C23C30/005 , C25D3/12 , C25D5/12 , C25D5/36 , C25D5/44 , C25D5/50 , C25D9/10 , C25D9/12 , F01N3/281 , F01N2510/08 , F01N2530/02 , F01N2530/04 , F01N2530/06 , F02M37/0017 , Y10T428/12743 , Y10T428/1275 , Y10T428/12771 , Y10T428/12806 , Y10T428/12826 , Y10T428/12931 , Y10T428/12937 , Y10T428/12951 , Y10T428/12972 , Y10T428/12979 , Y10T428/24967 , Y10T428/24975 , Y10T428/263 , Y10T428/264 , Y10T428/265
摘要: A method for producing a corrosion resistant metal substrate and corrosion resistant metal substrate provided thereby. The method involves forming a plated substrate including a metal substrate provided with a nickel layer or with a nickel and cobalt layer followed by electrodepositing a molybdenum oxide layer from an aqueous solution onto the plated substrate, which is subsequently subjected to an annealing step in a reducing atmosphere to reduce the molybdenum oxide in the molybdenum oxide layer to molybdenum metal in a reduction annealing step and to form a diffusion layer which contains nickel and molybdenum, and optionally cobalt.
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公开(公告)号:US09905376B2
公开(公告)日:2018-02-27
申请号:US15318042
申请日:2015-07-15
发明人: Huisheng Han , Zhenxing Wang , Yang Ding , Hongmei Zhang
IPC分类号: H01H1/021 , H01H11/04 , H01H11/06 , C23C18/16 , C23C18/18 , C23C18/36 , C23C18/50 , C23C18/52 , C23C18/48 , C25D3/14 , C25D3/56 , C25D7/00
CPC分类号: H01H1/021 , C23C18/1633 , C23C18/1692 , C23C18/1806 , C23C18/1844 , C23C18/36 , C23C18/48 , C23C18/50 , C23C18/52 , C25D3/14 , C25D3/562 , C25D7/00 , H01H11/041 , H01H11/06 , H01H2011/046
摘要: An arc-ablation resistant switch contact and a preparation method thereof is disclosed. The switch contact is a complex having a plurality of layers of layered structure, wherein a first layer is a hydrophobic rubber layer, a second layer is an adhesive layer, a third layer is a sheet metal layer, a fourth layer is an adhesive layer, and a fifth layer is a metal plated layer; wherein, the fifth layer of metal plated layer is formed by dipping a complex of the first layer, the second layer, the third layer and the fourth layer in a chemical plating bath containing refractory metal elements, and depositing on surfaces of the second layer, the third layer and the fourth layer in the complex by a chemical deposition method.
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公开(公告)号:US20180021979A1
公开(公告)日:2018-01-25
申请号:US15214246
申请日:2016-07-19
CPC分类号: C23C18/32 , B22C3/00 , B28B1/08 , B28B3/021 , B28B3/022 , B28B3/06 , B28B7/08 , B28B11/14 , B29C33/56 , B29C37/0032 , B29C45/37 , B29C45/568 , B29C73/00 , B30B11/00 , B30B11/04 , B30B15/065 , C23C18/1637 , C23C18/1662 , C23C18/1692 , C23C18/26
摘要: A compression shoe for use on a concrete products forming machine comprises a main body and a plated layer overlaid on the main body. The main body is configured to be slidingly received within a mold cavity of a concrete products mold. The plated layer overlaid on the main body of the compression shoe comprises a uniform electroless nickel (Ni), phosphorus (P), and polytetrafluoroethylene (PTFE) nano dispersion coating to effect enhanced material release characteristics by preventing the build-up of material on the compression shoes and enhancing their wear characteristics.
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公开(公告)号:US20180012782A1
公开(公告)日:2018-01-11
申请号:US15711963
申请日:2017-09-21
发明人: Marco Balucani
CPC分类号: H01L21/67173 , C23C18/1642 , C23C18/165 , C23C18/1692 , C23C18/32 , C25D3/38 , C25D5/022 , C25D5/026 , C25D5/04 , C25D7/12 , C25D11/02 , C25D11/32 , C25D17/00 , C25D17/001 , H01L21/6708 , H01L21/6723 , H01L21/67236 , H01L31/02008 , H01L31/022425 , H01L31/0352 , H01L31/1804 , Y02E10/50
摘要: A photovoltaic cell is proposed. The photovoltaic cell includes a substrate of semiconductor material, and a plurality of contact terminals each one arranged on a corresponding contact area of the substrate for collecting electric charges being generated in the substrate by the light. For at least one of the contact areas, the substrate includes at least one porous semiconductor region extending from the contact area into the substrate for anchoring the whole corresponding contact terminal on the substrate. In the solution according to an embodiment of the invention, each porous semiconductor region has a porosity decreasing moving away from the contact area inwards the substrate. An etching module and an electrolytic module for processing photovoltaic cells, a production line for producing photovoltaic cells, and a process for producing photovoltaic cells are also proposed.
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公开(公告)号:US20170268109A1
公开(公告)日:2017-09-21
申请号:US15614014
申请日:2017-06-05
发明人: Hajime MINAKI , Hiroaki SASAYAMA , Akihiro OKAMOTO , Takuya NIIMI
IPC分类号: C23C18/18
CPC分类号: C23C18/1806 , C23C18/1692 , C23C18/32 , F02F3/10 , Y10T428/12389 , Y10T428/1275
摘要: A mechanical component for an internal combustion engine includes a mechanical component body made of one of aluminum and aluminum alloy and used for the internal combustion engine, a nickel plating layer formed to cover a surface of a predetermined portion of the mechanical component body, and a reforming layer formed between the surface of the predetermined portion of the mechanical component body and the nickel plating layer.
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公开(公告)号:US20170226643A1
公开(公告)日:2017-08-10
申请号:US15425302
申请日:2017-02-06
申请人: NANOWEAR INC.
发明人: Vijay VARADAN , Pratyush Rai , Se Chang Oh
CPC分类号: C23C18/1692 , B82Y15/00 , B82Y30/00 , B82Y40/00 , C23C18/1635 , C23C18/1641 , C23C18/2086 , C23C18/31 , D06N1/00 , H05K3/12 , H05K3/4661
摘要: A process for the large-scale manufacturing vertically standing hybrid nanometer scale structures of different geometries including fractal architecture of nanostructure within a nano/micro structures made of flexible materials, on a flexible substrate including textiles is disclosed. The structures increase the surface area of the substrate. The structures maybe coated with materials that are sensitive to various physical parameters or chemicals such as but not limited to humidity, pressure, atmospheric pressure, and electromagnetic signals originating from biological or non-biological sources, volatile gases and pH. The increased surface area achieved through the disclosed process is intended to improve the sensitivity of the sensors formed by coating of the structure and substrate with a material which can be used to sense physical parameters and chemicals as listed previously. An embodiment with the structures on a textile substrate coated with a conductive, malleable and bio-compatible sensing material for use as a biopotential measurement electrode is provided.
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公开(公告)号:US20170125180A1
公开(公告)日:2017-05-04
申请号:US15318144
申请日:2015-07-15
发明人: Huisheng Han , Zhenxing Wang , Yang Ding , Hongmei Zhang
CPC分类号: H01H1/021 , C23C18/1633 , C23C18/1692 , C23C18/1806 , C23C18/1844 , C23C18/32 , C23C18/48 , C23C18/50 , C23C18/52 , C25D3/12 , C25D3/562 , C25D7/00 , H01H11/041 , H01H11/042 , H01H11/06 , H01H2011/046 , H01H2011/067
摘要: An arc-ablation resistant tungsten alloy switch contact and preparation method is disclosed. A contact member has a three-layer structure, wherein a first layer is a hydrophobic rubber layer, a second layer is a sheet metal layer, and a third layer is a tungsten alloy chemical deposition layer. A plating bath adopted in the chemical deposition contains 25-125 g/L soluble tungsten compound, 0-60 g/L soluble compound of a transition metal like ferrum, nickel, cobalt, copper or manganese, and 0-30 g/L soluble compound of tin, stibium, lead or bismuth. When a layered complex of the hydrophobic rubber layer and the sheet metal layer is chemically plated by the plating bath, a tungsten alloy plated layer is selectively deposited on a metal surface, and chemical deposition of the tungsten alloy does not occur on a surface of the hydrophobic rubber fundamentally.
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