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公开(公告)号:US20180000744A1
公开(公告)日:2018-01-04
申请号:US15639215
申请日:2017-06-30
Inventor: Mujibur Rahman Khan , Sakib Iqbal
IPC: A61K9/51 , A61K31/513 , B05D1/04
CPC classification number: A61K9/5146 , A61K9/0092 , A61K9/5138 , A61K9/5192 , A61K31/513 , A61K47/34 , A61P35/00 , B01J13/04 , B05D1/04
Abstract: Disclosed herein are nano-encapsulated compositions and methods of preparing the same. The compositions may be obtained through electrospray and electrospin technologies. The nano-encapsulated composition exhibit improved pharmacokinetic properties.
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公开(公告)号:US20170327937A1
公开(公告)日:2017-11-16
申请号:US15151836
申请日:2016-05-11
Applicant: UNITED TECHNOLOGIES CORPORATION
Inventor: Imelda P. Smyth , Ralph E. Page , Alan C. Barron
IPC: C23C4/12 , B05D1/28 , C23C14/22 , B05D1/04 , F01D9/02 , F01D11/00 , F01D25/08 , B05D1/18 , C23C16/44
CPC classification number: C23C4/12 , B05D1/04 , B05D1/18 , B05D1/28 , C04B41/009 , C04B41/5035 , C04B41/52 , C04B41/87 , C04B41/89 , C04B2111/00982 , C04B2235/3891 , C04B2235/3895 , C04B2235/404 , C04B2235/428 , C04B2235/9684 , C04B2237/36 , C04B2237/365 , C04B2237/368 , C23C4/134 , C23C14/22 , C23C16/44 , C23C28/042 , F01D9/02 , F01D11/00 , F01D25/08 , F05D2220/30 , F05D2220/80 , F05D2230/311 , F05D2230/312 , F05D2230/313 , F05D2230/314 , F05D2230/90 , F05D2300/222 , C04B35/584 , C04B35/565 , C04B35/806 , C04B41/5071 , C04B41/5027
Abstract: A coated article, comprising an article having at least one surface having disposed thereupon an oxidation resistant coating comprising at least two constituents to form a composition, a first constituent comprising at least one thermal expansion component comprising at least about 10% by volume to up to about 99% by volume of the composition, a second constituent comprising at least one oxygen scavenger comprising at least about 1% by volume to up to about 90% by volume of the composition.
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公开(公告)号:US09757769B2
公开(公告)日:2017-09-12
申请号:US13448325
申请日:2012-04-16
Applicant: Craig Grossman , Mai Ngo , Ronald Wysocki
Inventor: Craig Grossman , Mai Ngo , Ronald Wysocki
IPC: B05D7/00 , D06M11/46 , D06M13/51 , D06M13/513 , C09D5/00 , D06M23/00 , B05D5/00 , B05D1/02 , B05D1/04
CPC classification number: C09D5/14 , A01N55/00 , A01N55/02 , B05D1/02 , B05D1/04 , B05D5/00 , B05D7/52 , B05D2425/01 , B05D2601/24 , C07F7/28 , C08G77/26 , C08G79/00 , C09D5/00 , C09D7/63 , C09D183/08 , C09D185/00 , D06M11/46 , D06M13/51 , D06M13/513 , D06M15/423 , D06M23/005
Abstract: A method to prepare a self-decontaminating surface, where that method includes disposing a first coating on a surface, where that first coating comprises an organosilane, and disposing a second coating over the first coating, where the second coating comprises TiO2.
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公开(公告)号:US20170246655A1
公开(公告)日:2017-08-31
申请号:US15000954
申请日:2016-01-19
Applicant: Duane A. Klingerman , Patricia B. Klingerman , Wyatt B. Klingerman , Kerri A. Klingerman
Abstract: A method for applying a wax formulation to a vehicle. A water hose is connected at one end to a water source and at the other end it is connected to a siphon-sprayer having a wax formulation in its container. The wax formulation includes water and wax emulsions. The water is turned on and flows from the water source through the water hose and then through the siphon-sprayer. The wax formulation is siphoned up from the siphon-sprayer to form a wax formulation and water mixture that is then sprayed onto the vehicle. After application of the wax formulation and water mixture, no further step of buffing or wiping is required. In a preferred embodiment, the wax emulsion is a cationically charged wax emulsion.
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公开(公告)号:US09744558B2
公开(公告)日:2017-08-29
申请号:US14426963
申请日:2013-03-11
Applicant: MAZDA MOTOR CORPORATION
Inventor: Masafumi Shinoda , Minoru Kimura , Tatsuo Tsuneoka , Fumi Hirano
CPC classification number: B05D1/40 , B05B1/3405 , B05B5/04 , B05B5/0407 , B05B5/08 , B05B13/0431 , B05D1/02 , B05D1/04 , B05D7/14
Abstract: The present invention is intended to solve a problem that a coating film has an uneven thickness in the case where a coating target 1 has a stepped portion extending in a predetermined direction on its coating surface. To solve the problem, a follow-up coating is performed along the stepped portion S extending in the predetermined direction after coating of the entire coating surface of the coating target 1 so that paint mist adheres more to a relatively-recessed side of the stepped portion S.
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公开(公告)号:US09744555B2
公开(公告)日:2017-08-29
申请号:US15277202
申请日:2016-09-27
Applicant: Milliken Infrastructure Solutions, LLC
Inventor: James M. Souza
IPC: B05D1/12 , B29C41/28 , B29C41/36 , B29C41/44 , B29C70/50 , B29C70/02 , B05D1/04 , B05D1/18 , B05D3/00 , B29K101/10 , B29K105/16 , B29K707/04 , B29K507/04
CPC classification number: B05D1/12 , B05D1/04 , B05D1/18 , B05D3/007 , B05D2201/02 , B29C41/28 , B29C41/36 , B29C41/44 , B29C70/025 , B29C70/50 , B29K2101/10 , B29K2105/167 , B29K2507/04 , B29K2707/04
Abstract: Disclosed are methods and systems for dispersing nanoparticles into a matrix. Disclosed is a system and method for coating a carrier film with a resin, spraying the resin with a suspended nanoparticle solution, and then transferring the resin-nanoparticle matrix to a collection vessel for dispensing for end use. Also, suspended nanoparticle solution is sprayed onto carrier film, the film is dried, a fabric layer is coated with resin layer, and nanoparticles are then transferred into the fabric resin layer to create a nanoparticle-infused fabric matrix. Fabric layers can also be coated with resin and sprayed with nanoparticles. Also disclosed is a system and method for coating a first carrier film with nanoparticles, coating a second carrier film with resin, and transferring nanoparticles from first carrier into the resin layer on the second carrier to create a nanoparticle infused resin material that can be collected and dispensed for end use.
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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
Applicant: NANOWEAR INC.
Inventor: Vijay VARADAN , Pratyush Rai , Se Chang Oh
CPC classification number: C23C18/1692 , B82Y15/00 , B82Y30/00 , B82Y40/00 , C23C18/1635 , C23C18/1641 , C23C18/2086 , C23C18/31 , D06N1/00 , H05K3/12 , H05K3/4661
Abstract: 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:US20170204296A1
公开(公告)日:2017-07-20
申请号:US15403537
申请日:2017-01-11
Applicant: Toyota Tsusho America, Inc.
Inventor: Travis A. Malston
IPC: C09J7/02 , B32B15/04 , B32B15/18 , B32B15/20 , B32B27/06 , B32B25/04 , B05D1/14 , B05D1/04 , B60R13/08 , B60K11/08 , F01N1/24 , F01D25/24 , F01D25/14 , B64C1/40 , B32B7/12
CPC classification number: B64C1/40 , B05D1/06 , B05D1/14 , B32B3/263 , B32B5/02 , B32B5/14 , B32B5/145 , B32B7/12 , B32B15/04 , B32B15/14 , B32B15/18 , B32B15/20 , B32B25/04 , B32B25/10 , B32B27/06 , B32B27/12 , B32B37/12 , B32B2250/02 , B32B2255/02 , B32B2255/06 , B32B2255/10 , B32B2255/20 , B32B2255/26 , B32B2262/106 , B32B2307/102 , B32B2307/202 , B32B2307/206 , B32B2307/212 , B32B2307/302 , B32B2307/304 , B32B2307/3065 , B32B2307/58 , B32B2307/582 , B32B2307/5825 , B32B2307/71 , B32B2307/732 , B32B2405/00 , B32B2603/00 , B32B2605/00 , B32B2605/08 , B32B2605/18 , B60K11/08 , B60K13/04 , B60R13/08 , B60Y2306/09 , B64C1/066 , C08K3/046 , C09J7/22 , C09J7/38 , C09J2201/134 , C09J2201/606 , C09J2205/102 , C09J2400/163 , C09J2400/226 , C09J2421/006 , F01D25/145 , F01N1/04 , F01N1/24 , F01N3/2871 , F01N13/14 , F01N2260/20 , F01N2510/02 , F01N2510/04 , F02C7/045 , F05D2260/231 , F05D2260/96 , F05D2300/224 , F05D2300/614 , Y02T50/672 , Y02T50/675
Abstract: Arrangements related to carbon flocked tape are described. The flocked tape can include a first adhesive, a substrate, a second adhesive, and a plurality of fibers. The substrate can be formed from any suitable metal, polymer, and/or natural material. The fibers can be formed from milled recycled carbon fibers. The carbon fibers can be connected within the tape via an electrostatic flocking process. The flocked tape can allow for application, removal, and re-application. The carbon flocked tape can provide several benefits, such as electric and/or thermal conductivity, noise and vibration reduction, insulation and shielding, and altered fluid dynamics.
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公开(公告)号:US09687864B2
公开(公告)日:2017-06-27
申请号:US14310960
申请日:2014-06-20
Applicant: Battelle Memorial Institute
Inventor: John L. Fulton , George S. Deverman , Dean W. Matson , Clement R. Yonker , C. Douglas Taylor , James B. McClain , Joseph M. Crowley
CPC classification number: B05B5/032 , B05D1/025 , B05D1/04 , B05D3/0486 , Y10T428/24372 , Y10T428/25 , Y10T428/31504 , Y10T428/31507 , Y10T428/31511 , Y10T428/31544 , Y10T428/31551 , Y10T428/31663 , Y10T428/31725 , Y10T428/31786 , Y10T428/31855 , Y10T428/31931 , Y10T428/31935 , Y10T428/31938
Abstract: This disclosure describes the application of a supplemental corona source to provide surface charge on submicrometer particles to enhance collection efficiency and micro-structural density during electrostatic collection.
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公开(公告)号:US09669416B2
公开(公告)日:2017-06-06
申请号:US13918742
申请日:2013-06-14
Applicant: Massachusetts Institute of Technology
CPC classification number: B05B5/0255 , B05B1/14 , B05B5/025 , B05B5/0536 , B05D1/007 , B82Y30/00 , D01D5/0069
Abstract: Electrospraying systems and associated methods are generally described.
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