Patents Examined by Tabatha L Penny
  • Patent number: 11697221
    Abstract: A process for the production of acetylated wood elements, a cooling system and a wood acetylation plant are described. A process for the production of acetylated wood elements comprises acetylating wood elements and cooling the acetylated wood elements wherein the cooling comprises supplying liquid water to the acetylated wood elements to provide wetted wood elements and exposing the wetted wood elements to a gas flow.
    Type: Grant
    Filed: June 23, 2017
    Date of Patent: July 11, 2023
    Assignee: Tricoya Technologies Ltd
    Inventors: Theodorus Gerardus Marinus Maria Kappen, Stephen John Benstead
  • Patent number: 11655543
    Abstract: A method includes predicting a composition of calcium-magnesium-aluminum-silicate (CMAS) to be encountered by a high temperature mechanical system during use of the high temperature mechanical system. The method further includes selecting a composition of a CMAS-resistant barrier coating layer based at least in part on the predicted composition of CMAS. The CMAS-resistant barrier coating layer includes a base composition and at least one secondary oxide selected based on the predicted composition of CMAS. The at least one secondary oxide includes at least one of an oxide of a divalent element, an oxide of a trivalent element, or an oxide of a tetravalent element. The CMAS-resistant barrier coating layer comprises greater than 0 mol. % and less than about 7 mol. % of the at least one secondary oxide.
    Type: Grant
    Filed: August 8, 2018
    Date of Patent: May 23, 2023
    Assignees: ROLLS-ROYCE CORPORATION, ROLLS-ROYCE PLC, ROLLS-ROYCE NORTH AMERICAN TECHNOLOGIES, INC.
    Inventors: Ngunjoh Lawrence Ndamka, Li Li, Ann Bolcavage, Bruce Edward Varney, Sean E. Landwehr
  • Patent number: 11590484
    Abstract: A process for coating substrates of motor vehicle exhaust gas catalysts is described, and includes steps of applying a suspension (e.g., washcoat) to a substrate, allowing a shear force to act on the applied washcoat, as in pressure transmitted by gas (e.g., air), and then sucking and/or pressing the washcoat into the substrate. The process in inclusive of providing the suspension (washcoat) containing the catalytic material from above in a metered charge process. An apparatus for carrying out the noted process steps is also featured.
    Type: Grant
    Filed: July 5, 2018
    Date of Patent: February 28, 2023
    Assignee: UMICORE AG & CO. KG
    Inventors: Juergen Koch, Astrid Mueller
  • Patent number: 11578410
    Abstract: A method for depositing a metal-based coating on a particulate substrate, including: i) preparing a mixture comprising the particulate substrate, a powder comprising a coating metal oxide of one or more of Ti, Al, Zn, Sn, In, Sb, Ag, Co, V, Ni, Cr, Mn, Fe, Cu, Pt, Pd, Ta, Zr, Nb, Rh, Ru, Mo, Os, Re and W, a reducing agent powder of Al metal or Al alloy, and a powder of aluminium chloride; and ii) mixing and heating the mixture to form a coating on the particulate substrate, to produce a coated substrate product.
    Type: Grant
    Filed: November 16, 2018
    Date of Patent: February 14, 2023
    Assignee: D-BLOCK COATING PTY LTD.
    Inventors: Jawad Haidar, Sabaratnasingham Gnanarajan
  • Patent number: 11572615
    Abstract: A preparation method of a zirconium-titanium-based alloy embedded aluminized layer includes putting a zirconium-titanium-based alloy and an aluminiferous penetrant into a mould from bottom to top in a sequence of a first penetrant layer, a first zirconium-titanium-based alloy, a second penetrant layer, a second zirconium-titanium-based alloy and a third penetrant layer, and compacting to obtain a mixed sample; sequentially covering a surface of a mixed sample with activated carbon powder and alkali metal halide, and then carrying out heating and cooling treatments to obtain a zirconium-titanium-based alloy embedded aluminized layer. The preparation method does not need to adopt a special heating furnace or carry out heat treatment under a vacuum condition in an actual application, which simplifies operation process and condition and is suitable for large-scale production and application due to few technical difficulties and low equipment investment cost.
    Type: Grant
    Filed: June 11, 2021
    Date of Patent: February 7, 2023
    Assignee: Yanshan University
    Inventors: Xinyu Zhang, Yize Liu, Jiaqian Qin, Riping Liu
  • Patent number: 11572627
    Abstract: The invention provides a molten Al—Si alloy corrosion resistant composite coating and a preparation method and application thereof. The composite coating layer comprises an aluminized layer and a TiO2 film layer from a surface of a substrate to the outside in sequence. The preparation method of the coating layer comprises the following steps: (step S1) making a surface treatment to an Fe-based alloy, and then aluminizing with a solid powder penetrant; (step S2) sand-blasting the aluminized Fe-based alloy; (step S3) washing and drying the Fe-based alloy which has been sand-blasted; and (step S4) depositing the TiO2 film layer on a surface of the dried aluminized Fe-based alloy by using an atom layer vapor deposition. The application of the molten Al—Si alloy corrosion resistant composite coating is used for a solar thermal power generation heat exchange tube.
    Type: Grant
    Filed: March 3, 2020
    Date of Patent: February 7, 2023
    Assignee: CHANGSHA UNIVERSITY OF SCIENCE & TECHNOLOGY
    Inventors: Wei Li, Yilin Zhao, Jian Chen, Yanjie Ren, Jianjun He, Jianlin Chen
  • Patent number: 11572292
    Abstract: Copper-boron-ferrite (Cu—B—Fe) composites may be prepared and immobilized on graphite electrodes in a silica-based sol-gel, e.g., from rice husks. Different bimetallic loading ratios can produce fast in-situ electrogeneration of reactive oxygen species, H2O2 and .OH, e.g., via droplet flow-assisted heterogeneous electro-Fenton reactor system. Loading ratios of, e.g., 10 to 30 wt. % Fe3+ and 5 to 15% wt. Cu2+, can improve the catalytic activities towards pharmaceutical beta blockers (atenolol and propranolol) degradation in water. Degradation efficiencies of at least 99.9% for both propranolol and atenolol in hospital wastewater were demonstrated. Radicals of .OH in degradation indicate a surface mechanism at inventive cathodes with correlated contributions of iron and copper. Copper and iron can be embedded in porous graphite electrode surface and catalyze the conversion of H2O2 to .OH to enhance the degradation.
    Type: Grant
    Filed: March 12, 2020
    Date of Patent: February 7, 2023
    Assignee: King Fahd University of Petroleum and Minerals
    Inventors: Chanbasha Basheer, Hakimu Nsubuga
  • Patent number: 11560636
    Abstract: Methods for forming a metal oxide electrolyte improve ionic conductivity. Some of those methods involve applying a first metal compound to a substrate, converting that metal compound to a metal oxide, applying a different metal compound to the metal oxide, and converting the different metal compound to form a second metal oxide. That substrate may be in nanobar form that conforms to an orientation imparted by a magnetic field or an electric field applied before or during the converting. Electrolytes so formed can be used in solid oxide fuel cells, electrolyzers, and sensors, among other applications.
    Type: Grant
    Filed: July 8, 2019
    Date of Patent: January 24, 2023
    Assignees: FCET, INC., UT-Battelle, LLC
    Inventors: Leonid V. Budaragin, Mark A. Deininger, Michael M. Pozvonkov, D. Morgan Spears, II, Paul D. Fisher, Gerard M. Ludtka, Arvid E. Pasto
  • Patent number: 11551928
    Abstract: A method for preparing a semiconducting thin film and device for carrying out the method, wherein the method includes: (1) providing a liquid-liquid interface; (2) providing at least one layered semiconductor material or its precursor(s) in the form of particles in a solvent in the form of a dispersion; (3) injecting the dispersion at the liquid-liquid interface, in order to obtain an assembly of semiconductor/semiconductor precursor particles; (4) bringing the assembly of into contact with a flexible substrate; and (5) applying a surface pressure to the dispersion to obtain a particle film of semiconductor/semiconductor precursor on the substrate, wherein the first solvent has a higher density than the second solvent.
    Type: Grant
    Filed: August 3, 2018
    Date of Patent: January 10, 2023
    Assignee: TOYOTA MOTOR EUROPE
    Inventors: Sachin Kinge, Hannah Johnson, Kevin Sivula, Rebekah Anne Wells
  • Patent number: 11548817
    Abstract: A method for the manufacture of mineral wool, is disclosed. In one example, the method comprises reacting an aqueous phenol-formaldehyde resole with free formaldehyde with a first amount of urea, thereby preparing a prereact; contacting the prereact with a second amount of urea; applying the resulting mixture of prereact and second amount of urea, as part of a binder, optionally with additives, to the surface of mineral fibers; and curing the binder on the surface of the mineral fibers. The total amount of urea used ranges 10-40 wt. % relative to the sum of the dry weight of the phenol-formaldehyde resole and the total amount of urea, and the second amount of urea used is at least 40 wt.-% of the total amount of urea. The invention also relates to a mineral wool product with reduced emissions of formaldehyde obtained by the method.
    Type: Grant
    Filed: October 26, 2017
    Date of Patent: January 10, 2023
    Assignee: URSA Insulation, S.A.
    Inventors: Alejandro Molinero Arenas, Ana Isabel Aznar Écija, Mireia Querol Piñot, Arturo Luís Casado Dominguez
  • Patent number: 11536151
    Abstract: An abrasive coating system for a substrate of an airfoil in a turbine engine high pressure compressor, comprising a plurality of grit particles adapted to be placed on a top surface of the substrate; a matrix material bonded to the top surface; the matrix material partially surrounds the grit particles, the matrix material consisting of unalloyed chromium and unalloyed aluminum distributed throughout the matrix material, wherein the grit particles extend above the matrix material relative to the top surface; and a film of oxidant resistant coating applied over the plurality of grit particles and the matrix material.
    Type: Grant
    Filed: April 24, 2020
    Date of Patent: December 27, 2022
    Assignee: Raytheon Technologies Corporation
    Inventor: Christopher W. Strock
  • Patent number: 11519073
    Abstract: A methods and systems are disclosed for coating a large oven cavity. A method of coating an oven includes spraying a coating at room temperature onto a plurality of surfaces in the oven cavity in one or more layers and manipulating the oven to position the plurality of surfaces while spraying in various embodiments. An article includes an oven having a cavity, where the cavity has a surface with a volume of about 3 ft3 to about 7 ft3, and a coating on the surface of the cavity, the coating including a sol-gel ceramic.
    Type: Grant
    Filed: October 9, 2020
    Date of Patent: December 6, 2022
    Assignee: Lincoln Industries, Inc.
    Inventors: Jeremy Miller, Adam Matzner
  • Patent number: 11515525
    Abstract: The present invention is related to a process for coating anoxide material, said process comprising the following steps: (a) providing a particulate material selected from lithiated nickel-cobalt aluminum oxides, lithiated cobalt-manganese oxides and lithiated layered nickel-cobalt-manganese oxides, (b) treating said cathode active material with a metal alkoxide or metal amide or alkyl metal compound, (c) treating the material obtained in step (b) with moisture, and, optionally, repeating the sequence of steps (b) and (c), wherein steps (b) and (c) are carried out in a mixer that mechanically introduces mixing energy into the particulate material, or by way of a moving bed or fixed bed, and wherein steps (b) and (c) are carried out at a pressure that is in the range of from 5 mbar to 1 bar above normal pressure.
    Type: Grant
    Filed: February 21, 2018
    Date of Patent: November 29, 2022
    Assignee: BASF SE
    Inventors: Frank Kleine Jaeger, Tillmann Liebsch, Michael Schoenherr, Dominik Garella, Fatih Cetinel, Heino Sommer, Maraike Ahlf, Daniel Loeffler, Regina Vogelsang, Jacob Haag
  • Patent number: 11473201
    Abstract: A method is disclosed for treating an anodized metal surface. According to the method, polynuclear clusters comprising aluminum oxide hydroxide are applied to the anodized metal surface.
    Type: Grant
    Filed: November 12, 2020
    Date of Patent: October 18, 2022
    Assignee: HAMILTON SUNDSTRAND CORPORATION
    Inventors: Susanne M. Opalka, Weina Li, Joseph J. Sangiovanni, Mark R. Jaworowski, Georgios S. Zafiris, Weilong Zhang, Zhongfen Ding
  • Patent number: 11474399
    Abstract: An alignment coating method for a substrate includes providing at least one substrate and at least one alignment plate, covering the alignment plate on to the substrate, coating polyimide liquid on the alignment plate, and transferring a polyimide liquid on the alignment plate to a region out of a blind via on the substrate according to a preset printing direction through a printing mechanism. Each of the substrates has the blind via. The alignment plate has at least one opening. The opening corresponds to the blind via.
    Type: Grant
    Filed: May 21, 2019
    Date of Patent: October 18, 2022
    Assignee: Wuhan China Star Optoelectronics Technology Co., Ltd.
    Inventors: Guizhi Ma, Yongkal Li
  • Patent number: 11453088
    Abstract: Process for formation of composite coatings and composite coatings formed thereby. A process for formation of a metal-matrix composite coating on a surface of a substrate is provided. The substrate is an aluminum alloy. The metal-matrix composite coating is formed on the substrate through laser deposition using filler materials comprising aluminum, silicon and graphite. The particles forming the metal-matrix composite coating are formed in-situ from the filler materials. A metal-matrix composite coating obtained by the laser deposition process with in-situ formation of particles is also provided.
    Type: Grant
    Filed: September 18, 2019
    Date of Patent: September 27, 2022
    Inventor: Zheng James Chen
  • Patent number: 11441060
    Abstract: A method of making a particulate for an additive manufacturing technique includes receiving particulate at a chemical vapor deposition (CVD) reactor, flowing a hydrocarbon gas into the CVD reactor, decomposing the hydrocarbon gas in the CVD reactor, and depositing a carbonaceous coating on the particulate using a product of the decomposed hydrocarbon gas. The coating deposited over the particulate has a reflectivity that is lower than the reflectivity the underlying particulate body to reduce an energy input requirement for purposes of fusing the particulate into a layer of an article using an additive manufacturing technique. In embodiments, the coated particulate can be received at an additive manufacturing apparatus and fused into a layer of an article as a metallic-carbon composite using a high-density energy source.
    Type: Grant
    Filed: September 20, 2019
    Date of Patent: September 13, 2022
    Assignee: Collins Engine Nozzles, Inc.
    Inventors: John A. Sharon, Ying She, Tahany I. El-Wardany, Wayde R. Schmidt
  • Patent number: 11433366
    Abstract: Processes for making algaecidal roofing granules are disclosed. In one aspect, the disclosure provides a method includes providing composite nanoparticles comprising algaecidal nanoparticles and a carrier material; coating granule cores with the coating material to form a coating layer having an exterior surface; and applying the composite nanoparticles to the exterior surface of the coating layer to provide the algaecidal nanoparticles at exterior surfaces of the algaecidal roofing granules. In another aspect of the disclosure, a method includes dispersing composite nanoparticles in a coating material, the composite nanoparticles including a carrier material and algaecidal nanoparticles, then coating the granule cores with the coating material to form a coating layer; and curing the coating layer, the cured coating layer providing algaecidal nanoparticles at exterior surfaces of the algaecidal roofing granules.
    Type: Grant
    Filed: October 28, 2016
    Date of Patent: September 6, 2022
    Assignee: CertainTeed LLC
    Inventors: Ming Liang Shiao, Gregory F. Jacobs, Sean X. Zhou
  • Patent number: 11421326
    Abstract: In accordance with one or more embodiments of the present disclosure, a process for preventing corrosion of a metallic surface of a pipeline includes contacting the metallic surface with a corrosion inhibitor. The corrosion inhibitor comprises a polymer of formula R—O—(POL)-Z. R is a straight or branched alkyl or aryl; POL is a polyglycerol based polymer; Z is a non-ionic amine, a cyclic amine having 5 to 8 atoms, a diamine, a triamine, a tetra-amine, a polymeric amine, a thiol, a disulfide, or —NH—R1—SH; and R1 is a hydrocarbyl. The corrosion inhibitor is also disclosed.
    Type: Grant
    Filed: June 22, 2020
    Date of Patent: August 23, 2022
    Assignee: Saudi Arabian Oil Company
    Inventors: Muhammad Imran Ul-haq, Abdullah Al-Malki, Donya A. Alsewdan, Nayef M. Alanazi
  • Patent number: 11400485
    Abstract: The present application is applicable to the field of material making, and there is provided a baking method, device and baking oven including: acquiring a predetermined instruction, and starting timing and cycling the following steps: controlling a first set of pins to support a substrate from an initial position and recording the rising times of the first set of pins; raising the first set of pins to a first preset position, and controlling the first set of pins to move a first preset distance in a first preset direction, wherein the first preset distance is associated with the rising times of the first set of pins; controlling the lowering of the first set of pins such that a second set of pins supports the substrate; and controlling the first set of pins to return to the initial position, when the first set of pins drops to a second preset position.
    Type: Grant
    Filed: December 28, 2018
    Date of Patent: August 2, 2022
    Assignees: HKC CORPORATION LIMITED, CHONGQING HKC OPTOELECTRONICS TECHNOLOGY CO., LTD.
    Inventor: Xiaobin Guo