Patents Examined by Xiuyu Tai
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Patent number: 10604860Abstract: The present disclosure includes a method for coating a vehicle body-in-white (BIW) in a tank of processing fluid. In one form, the method includes lowering the vehicle BIW in a tank of processing fluid, rotating the vehicle BIW around its lateral axis until the vehicle BIW is completely submerged in the processing fluid, and simultaneously conveying the vehicle BIW along a longitudinal axis of the tank while rotating the vehicle BIW around its longitudinal axis in a “corkscrew” type movement.Type: GrantFiled: December 1, 2017Date of Patent: March 31, 2020Assignee: Ford Motor CompanyInventors: Thomas Norton, Kevin Ellwood
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Patent number: 10596542Abstract: Methods and apparatus for producing chemical nanostructures having multiple elements, such as boron and nitride, e.g. boron nitride nanotubes, are disclosed. The method comprises creating a plasma jet, or plume, such as by an arc discharge. The plasma plume is elongated and has a temperature gradient along its length. It extends along its length into a port connector area having ports for introduction of feed materials. The feed materials include the multiple elements, which are introduced separately as fluids or powders at multiple ports along the length of the plasma plume, said ports entering the plasma plume at different temperatures. The method further comprises modifying a temperature at a distal portion of or immediately downstream of said plasma plume; and collecting said chemical nanostructures after said modifying.Type: GrantFiled: July 8, 2016Date of Patent: March 24, 2020Assignee: The Regents of the University of CaliforniaInventor: Alexander K. Zettl
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Patent number: 10584886Abstract: An air purification system including a filter assembly including a substrate including a fibrous media, and a photocatalytic material disposed on the substrate, wherein the photocatalytic material includes a first quantity of crushed nanostructures; and a photon source arranged to illuminate the photocatalytic material with optical radiation.Type: GrantFiled: October 16, 2018Date of Patent: March 10, 2020Assignee: Molekule, Inc.Inventors: Dilip Goswami, Philip Myers
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Patent number: 10577714Abstract: There are provided a plating apparatus and a plating method enabling continuous operation even while a stocker is taken out of the plating apparatus. The plating apparatus includes a plating treatment section performing plating on a substrate and a plurality of stockers configured to be able to store a holder configured to hold a substrate or an anode. At least one of the plurality of stockers is configured to be movable into and out of the plating apparatus.Type: GrantFiled: April 13, 2017Date of Patent: March 3, 2020Assignee: EBARA CORPORATIONInventors: Yoshitaka Mukaiyama, Jumpei Fujikata, Hideharu Aoyama
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Patent number: 10577241Abstract: Provided is a hydrogen generating apparatus adaptable to fluctuating hydrogen demand, particularly by enabling large-scale hydrogen production, generating pure hydrogen at a high yield. The hydrogen generating apparatus 1 includes a tabular dielectric body 2 having a first surface 11 with a source gas flow channel 13 formed as a recess and a second surface 12 approximately parallel to the first surface 11, a grounding electrode 3, a hydrogen flow channel plate 4 with a hydrogen flow channel 18 and a hydrogen outlet 19, being arranged on a first surface 11 side of dielectric body 2, a hydrogen separation membrane 5 between source gas flow channel 13 and hydrogen flow channel 18, and a high-voltage power supply 6 that causes electric discharge in source gas flow channel 13 between hydrogen separation membrane 5 and grounding electrode 3. Hydrogen separation membrane 5 transmits hydrogen generated by electric discharge in source gas flow channel 13 into hydrogen flow channel 18.Type: GrantFiled: January 19, 2018Date of Patent: March 3, 2020Assignees: Gifu University, Sawafuji Electric Co., Ltd.Inventors: Shinji Kambara, Tomonori Miura
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Patent number: 10577709Abstract: Process for deposition of a dense thin film comprising at least one material Px on a substrate, in which: (a) a colloidal suspension is procured containing nanoparticles of at least one material Px, (b) said substrate is immersed in said colloidal suspension, jointly with a counter electrode, (c) an electrical voltage is applied between said substrate and said counter electrode so as to obtain the electrophoretic deposition of a compact film comprising nanoparticles of said at least one material Px on said substrate, (d) said compact film is dried, (e) said film is mechanically consolidated, (f) thermal consolidation is carried out at a temperature TR that does not exceed 0.7 times (and preferably does not exceed 0.5 times) the melting or decomposition temperature (expressed in ° C.) of the material Px that melts at the lowest temperature, preferably at a temperature of between 160° C. and 600° C., and even more preferably at a temperature of between 160° C. and 400° C.Type: GrantFiled: October 30, 2012Date of Patent: March 3, 2020Assignee: I-TENInventors: Frédéric Bouyer, Bruno Vuillemin, Fabien Gaben
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Patent number: 10577708Abstract: A problem to be solved by the present invention is to provide a method for forming a multilayer coating film, the method being capable of achieving excellent finished appearance and excellent corrosion resistance without affecting electrodeposition coatability even when a part or all of the water-washing step is omitted after chemical conversion treatment, and to provide a coated article.Type: GrantFiled: August 8, 2014Date of Patent: March 3, 2020Assignee: KANSAI PAINT CO., LTD.Inventors: Yukihiro Nemoto, Hideki Matsuda
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Patent number: 10577710Abstract: A method for forming an adhesion promoting layer and a corrosion resistant layer over the surfaces of a body-in-white (“BIW”) structure is provided. The method includes immersing the BIW structure in a pre-activating bath to pre-activate the surfaces of the BIW structure. The surfaces of the BIW structure comprise at least an aluminum alloy surface, at least a surface comprising ferrous metal, zinc, or TiZr, and the surfaces are substantially free of magnesium alloys. An adhesion promoting layer comprising cerium and a corrosion resistant layer comprising polymers are subsequently deposited over the pre-activated surfaces of the BIW structure by immersing the BIW structure in an aqueous bath comprising a source of cerium cations and a polymer precursor.Type: GrantFiled: November 6, 2017Date of Patent: March 3, 2020Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLCInventors: Surender Maddela, Blair E. Carlson
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Patent number: 10556029Abstract: An ozone generation device has a casing; a wall body partitioning a space surrounded by the casing into at least a first chamber and a second chamber; a first opening and a second opening provided in a part of the casing to communicate an outer side of the casing and the first chamber; a blower communicating the first chamber and the second chamber; a third opening provided in a part of the casing to communicate the outer side of the casing and the second chamber; a light source body provided between the blower and the third opening in the second chamber and configured to emit ultraviolet light; and an electrical body provided in a position between the first opening and the second opening in the first chamber and configured to supply electric power for driving the light source body.Type: GrantFiled: July 25, 2017Date of Patent: February 11, 2020Assignee: USHIO DENKI KABUSHIKI KAISHAInventors: Kenichi Sabatake, Naoki Goto, Manabu Mori, Takanori Jogi
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Patent number: 10538851Abstract: A coating method for a clad steel in which stainless sheets are combined on adjacent surfaces of an aluminum sheet may include preparing the clad steel, preparing a coating solution in which an epoxy resin and titanium dioxide (TiO2) powder are combined in an acrylic resin, etching the clad steel to improve adhesion property between the coating solution and the clad steel, heating the clad steel, and performing electrodeposition by immersing the clad steel in the coating solution.Type: GrantFiled: March 6, 2019Date of Patent: January 21, 2020Assignees: Hyundai Motor Company, Kia Motors CorporationInventor: Chang Yeol Yoo
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Patent number: 10537902Abstract: A system for extracting metals (e.g. precious metals or dangerous metals) from a substrate material such as sludge from a lake bed or sewage treatment facility includes processing the substrate material and metals by exposing the substrate material and metals to the plasma of an electric arc. Then, the exposed substrate material and metals are passed through an electrically charged collection grid in which the metals, now electrically charged, are attracted to the collection grid and hold to the collection grid and the substrate material exits the collection grid with less concentrations (or none) of the metals. In some embodiments, in addition to recovering the metals (e.g. precious metals, dangerous metals, etc.), a flammable gas is produced.Type: GrantFiled: August 14, 2017Date of Patent: January 21, 2020Assignee: Magnegas IP, LLCInventor: Ermanno Santilli
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Patent number: 10525408Abstract: The invention relates to an improved method and to an improved device for degassing polymer melts and for neutralizing the thus produced pollutants, characterised by the following characteristics: said pollutants are guided to a plasma source after removal from the degassing area and prior to adding to a filter step or a separator, said plasma source being built and/or formed such that in said plasma source, the pollutants are transformed, entirely or partially, in a plasma aggregate state.Type: GrantFiled: October 1, 2015Date of Patent: January 7, 2020Assignee: BRÜCKNER MASCHINENBAU GMBH & CO. KGInventors: Josef Eisch, Nicole Ambrosius-Voss, Rainer Schwuchow, Stefan Seibel
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Patent number: 10526715Abstract: A rare earth permanent magnet is prepared by immersing a portion of a sintered magnet body of R1—Fe—B composition (wherein R1 is a rare earth element) in an electrodepositing bath of a powder dispersed in a solvent, the powder comprising an oxide, fluoride, oxyfluoride, hydride or rare earth alloy of a rare earth element, effecting electrodeposition for letting the powder deposit on a region of the surface of the magnet body, and heat treating the magnet body with the powder deposited thereon at a temperature below the sintering temperature in vacuum or in an inert gas.Type: GrantFiled: October 13, 2017Date of Patent: January 7, 2020Assignee: SHIN-ETSU CHEMICAL CO., LTD.Inventors: Yukihiro Kuribayashi, Yoshifumi Nagasaki
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Patent number: 10519180Abstract: Biomass feedstocks (e.g., plant biomass, animal biomass, and municipal waste biomass) are processed to produce useful products, such as fuels. For example, systems are described that can use feedstock materials, such as cellulosic and/or lignocellulosic materials and/or starchy materials, to produce a product or intermediate, e.g., energy, a food, a fuel, or a material.Type: GrantFiled: June 1, 2018Date of Patent: December 31, 2019Assignee: Xyleco, Inc.Inventors: Marshall Medoff, Thomas Craig Masterman
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Patent number: 10510510Abstract: Methods and systems are described for processing cellulosic and lignocellulosic materials and useful intermediates and products, such as energy and fuels. For example, irradiating methods and systems are described to aid in the processing of the cellulosic and lignocellulosic materials. The electron beam accelerator has multiple windows foils and these foils are cooled with cooling gas. In one configuration a secondary foil is integral to the electron beam accelerator and in another configuration the secondary foil is part of the enclosure for the biomass conveying system.Type: GrantFiled: April 13, 2017Date of Patent: December 17, 2019Assignee: Xyleco, Inc.Inventors: Marshall Medoff, Anthony Peters, Thomas Craig Masterman, Robert Paradis, Kenny Kin-Chui Ip
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Patent number: 10501320Abstract: An ozone generation system which is adaptable for supplying ozone to different medium and small application processes. The system has a source of feed gas, a corona discharge cell receiving the feed gas from the feed gas source and generating ozone for the application process, a flow controller measuring and managing the flow of the feed gas from the feed gas source to the corona discharge cell; and a regulator receiving gas from the corona discharge cell and sending the gas to the application process. The regulator maintains pressure in the corona discharge cell independent of the application process pressure.Type: GrantFiled: April 22, 2016Date of Patent: December 10, 2019Assignee: Pacific Ozone Technology, Inc.Inventor: Philip Tinsley Dempster
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Patent number: 10500407Abstract: Disclosed herein are atmospheric pressure pin-to-hole pulsed spark discharge devices and methods for creating plasma. The devices include a conduit for fluidically communicating a gas, a plasma, or both, therethrough, portion of the conduit capable of being connected to a gas supply, and a second portion of the conduit capable of emitting a plasma; a positive electrode comprising a sharp tip; and a ground plate electrode. Disclosed are methods for treating a skin ulcer using non-thermal plasma include flowing a gas through a cold spark discharge zone simultaneously with the creation of a pulsed spark discharge to give rise to a non-thermal plasma emitted from a conduit, the non-thermal plasma comprising NO; and contacting a skin ulcer with said non-thermal plasma for sufficient time and intensity to give rise to treatment of the skin ulcer.Type: GrantFiled: October 25, 2016Date of Patent: December 10, 2019Assignee: Drexel UniversityInventors: Danil V. Dobrynin, Alexander Fridman, Young I. Cho, Gregory Fridman, Gennady Friedman
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Patent number: 10486104Abstract: Systems and processes for reducing carbon capture emissions are described. The process involves introducing a radical species into a decarbonized combustion gas. The radical species react with residual amines or unwanted compounds in the decarbonized combustion gas, thus reducing the concentration of residual amines or unwanted compounds in the exhaust gas. The system includes a carbon capture absorber with non-thermal plasma generator configured to provide radical species reducing the concentration of residual amines or unwanted compounds in the exhaust combustion gas.Type: GrantFiled: July 13, 2018Date of Patent: November 26, 2019Assignee: Fluor Technologies CorporationInventors: Satish Reddy, Joseph Yonkoski
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Patent number: 10485889Abstract: A sterilization case can be reduced, and it is possible to reliably sterilize not only the surface of a mobile communication device but hidden portions thereof as well. A sterilization case includes a case main body and a cover body. The case main body includes a voltage supplying part and a loading part having an electrode sheet. The voltage supplying part includes a boosting circuit, a direct-current conversion circuit, a switch circuit, and a sterilization meter. The boosting circuit supplies the voltage necessary to generate ozone to the electrode sheet. The direct-current conversion circuit performs conversion to a power source voltage of a smartphone as the mobile communication device and outputs to a male connector. The male connector can be connected to a female connector of the smartphone. The cover body is attached to the case main body so as to be able to open and close.Type: GrantFiled: May 19, 2016Date of Patent: November 26, 2019Assignees: CREATIVE TECHNOLOGY CORPORATION, MATSUDA DESIGN LTDInventors: Mutsumi Kusano, Yoshiaki Tatsumi, Li Luo, Kazuki Tsuboi, Satomi Koyama, Takeshi Matsuda, Shujiro Hayashi
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Patent number: 10478517Abstract: Apparatus comprising: a fumehood; and an air treatment device for purging unwanted substances from the exhaust air of the fumehood, the air treatment device comprising: a non-thermal plasma reactor stage for producing air byproducts comprising O., N., OH. and O3 and introducing those air byproducts into the exhaust air of the fumehood so as to treat the exhaust air of the fumehood; and a catalyst stage downstream of the non-thermal plasma reactor stage for further treating the air downstream of the non-thermal plasma reactor stage.Type: GrantFiled: October 4, 2013Date of Patent: November 19, 2019Assignee: FIPAK Research And Development CompanyInventors: Francois Hauville, Cédric Herry