Patents Examined by Lois L Zheng
  • Patent number: 10233088
    Abstract: A coating agent for an electrical steel sheet and a manufacturing method therefor are disclosed. A coating agent for an electrical steel sheet according to an example embodiment of the present invention includes a metal phosphate derivative solution, colloid silica, chromium oxide, and solid silica, and a solvent, wherein the metal phosphate derivative is a single material of a magnesium phosphate derivative or a mixed material of an aluminum phosphate derivative and a magnesium phosphate derivative, and in the mixed material, an amount of aluminum phosphate derivative is 10 wt % or less (not including 0%).
    Type: Grant
    Filed: December 17, 2014
    Date of Patent: March 19, 2019
    Assignee: POSCO
    Inventors: Min Soo Han, Chang Soo Park, Dae-Uk Kim, Ho-Kyung Shim, Soon-Bok Park
  • Patent number: 10227686
    Abstract: The invention relates to a wet-chemical pretreatment of zinc surfaces prior to applying a corrosion-protection coating, which deposits a thin inorganic coating of oxide and/or metallic iron. An iron layer structure which is applied according to the invention, hereinafter referred to as ferrization, improves the achievable corrosion protection of wet-chemical conversion coatings on zinc surfaces. Furthermore, the ferrization process causes both a reduction of the contact corrosion of joined metal components which have zinc and iron surfaces as well as a reduction of corrosive coating migration on cut edges of galvanized steel strips with coating layer structures. In particular, the invention relates to an alkaline composition containing an iron ion source, a reducing agent based on oxoacids of nitrogen and phosphorus, and water-soluble organic carboxylic acids with an amino group at the ?, ?, or ? position with respect to the acid group and/or the water-soluble salts thereof.
    Type: Grant
    Filed: August 22, 2014
    Date of Patent: March 12, 2019
    Assignee: Henkel AG & Co. KGaA
    Inventors: Andreas Arnold, Michael Wolpers, Marcel Roth, Uta Sundermeier
  • Patent number: 10227679
    Abstract: New aluminum casting alloys having 8.5-9.5 wt. % silicon, 0.8-2.0 wt. % copper (Cu), 0.20-0.53 wt. % magnesium (Mg), and 0.35 to 0.8 wt. % manganese are disclosed. The alloy may be solution heat treated, treated in accordance with T5 tempering and/or artificially aged to produce castings, e.g., for cylinder heads and engine blocks. In one embodiment, the castings are made by high pressure die casting.
    Type: Grant
    Filed: December 18, 2014
    Date of Patent: March 12, 2019
    Assignee: ALCOA USA CORP.
    Inventors: Xinyan Yan, Jen C. Lin
  • Patent number: 10214827
    Abstract: Methods of preparing metal and metal alloys with partially microcrystalline anodic coatings are disclosed. Associated article therefrom are correspondingly disclosed. The partially microcrystalline anodic coatings exhibit fade and pattern removal resistance when subjected to sterilization processes. Partially microcrystalline anodic coating can be prepared by impregnation of micropores of a metal or metal substrate with metal precursor species, conversion of the metal precursor species into metal hydroxides, and one or more additional treatments to promote phase transformation of the metal hydroxide product into metal oxides solids and bonding with metastable metal oxide substance in the pore structure of the metal or metal alloy substrate.
    Type: Grant
    Filed: February 11, 2016
    Date of Patent: February 26, 2019
    Assignee: SANFORD PROCESS CORPORATION
    Inventors: Timothy P. Cabot, John J. Tetrault, Dong-Jin Sung
  • Patent number: 10219391
    Abstract: A method for pretreating a copper surface for the subsequent formation of a firmly adhesive bond between the copper surface and a plastic material substrate. The method comprises bringing a copper surface into contact with: a) hydrogen peroxide; b) an acid; c) a nitrogen-containing, five-membered, heterocyclic compound; and d) a lactam, amide, or polyamide, connected at one or more of its nitrogen atoms with at least one residue of formula (I), wherein: n is an integer from 1 to 100; R1 is hydrogen or a hydrocarbon residue with 1 to 6 carbon atoms; R2 is hydrogen or a hydrocarbon residue with 1 to 6 carbon atoms; and each R1 and R2 in a —(CHR1—CHR2—O)— moiety is selected independently of each R1 and R2 in another —(CHR1—CHR2—O)— moiety.
    Type: Grant
    Filed: October 5, 2016
    Date of Patent: February 26, 2019
    Assignee: Atotech Deutschland GmbH
    Inventors: Christian Sparing, Thomas Huelsmann, Arno Clicque, Patrick Brooks, Adrian Zee, Heiko Brunner
  • Patent number: 10208209
    Abstract: An aqueous agent for the anticorrosive treatment of metallic substrates and to a method for coating such substrates. The aqueous agent according to this invention includes at least one compound that dissociates into zirconium- or titanium-fluorine complexes in aqueous solution, at least one water-soluble compound that releases metal cations, the metal cations being selected from the group composed of: iron-, copper-, or silver ions, and a water-soluble alkoxysilane that has at least one epoxy group.
    Type: Grant
    Filed: December 9, 2013
    Date of Patent: February 19, 2019
    Assignee: THYSSENKRUPP STEEL EUROPE AG
    Inventors: Thomas Sondermann, Christoph Strahl, Matthias Kimpel, Thomas Lostak
  • Patent number: 10208361
    Abstract: In a method for the production of a seamless, multilayered tubular product, a further layer is applied through hardfacing on a base layer of a round or polygonal block, with the further layer made of a metallic material which is different than a metallic material of the base layer. The round or polygonal block with hardfaced further layer is hot formed to produce a tubular product with reduced wall thickness and outer perimeter in one or more stages. A diffusion layer is established between the base layer and the further layer through heat treatment before hot forming and/or after hot forming, thereby producing a thickness of the diffusion layer of at least 5 ?m with the proviso that the thickness of the diffusion layer is 0.1% to 50% of a thickness of the further layer, with the thickness of the further layer being equal to or greater than 100 ?m.
    Type: Grant
    Filed: July 8, 2016
    Date of Patent: February 19, 2019
    Assignee: Benteler Steel/Tube GmbH
    Inventors: Martin Junker, Thomas Vietoris, Christian Kronholz, Albert Lorentz
  • Patent number: 10204712
    Abstract: A method for the inner-contour passivation of steel surfaces of a nuclear reactor consists in filling a first contour of a nuclear reactor with a liquid metal coolant, introducing a reagent into the liquid metal coolant, said reagent interacting with the material of elements of the first contour, forming a protective film, and heating the liquid metal coolant, having the reagent introduced therein, to a temperature allowing for conditions for forming the protective film. The liquid metal coolant having the reagent introduced therein is kept at said temperature until a continuous protective film is formed on the surface of the material of the elements of the first contour. The liquid metal coolant having reagent introduced therein is heated by means of the friction thereof against rotating vanes of a vane pump, which is submerged in the liquid metal coolant.
    Type: Grant
    Filed: December 8, 2014
    Date of Patent: February 12, 2019
    Assignee: Joint Stock Company “AKME-Engineering”
    Inventors: Petr Nikiforovich Martynov, Radomir Shamilievich Askhadullin, Aleksey Nikolaevich Storozhenko, Konstantin Dmitrievich Ivanov, Aleksandr Urievich Legkikh, Said Mirfaisovich Sharikpulov, Aleksandr Ivanovich Filin, Sergey Viktorovich Bulavkin
  • Patent number: 10204724
    Abstract: The present invention provides a Nd—Fe—B magnet including a first film of aluminum having a first predetermined hardness and an anti-corrosive coating of oxidized aluminum having a second predetermined hardness on the first film. The second predetermined hardness is at least eight times the first predetermined hardness. The present invention also provides a method for preparing a hard aluminum film on the Nd—Fe—B magnet. The method includes depositing the first film on the Nd—Fe—B magnet under vacuum, disposing the Nd—Fe—B magnet having the first film on the anode, and subjecting the Nd—Fe—B magnet having the first film to the anodic oxidation process under a solution containing an electrolyte present between 15 wt. % to 20 wt. % to form the anti-corrosive coating on the first film to prevent the Nd—Fe—B magnet from corroding. The electrolyte is selected from at least one of sulfuric acid, chromic acid, boric acid, and oxalic acid.
    Type: Grant
    Filed: November 3, 2015
    Date of Patent: February 12, 2019
    Assignee: Yantai Shougang Magnetic Materials Inc.
    Inventors: Kunkun Yang, Zhongjie Peng
  • Patent number: 10190196
    Abstract: New 6xxx aluminum alloys having an improved combination of properties are disclosed. The new 6xxx aluminum alloy generally include from 0.30 to 0.53 wt. % Si, from 0.50 to 0.65 wt. % Mg wherein the ratio of wt. % Mg to wt. % Si is at least 1.0:1 (Mg:Si), from 0.05 to 0.24 wt. % Cu, from 0.05 to 0.14 wt. % Mn, from 0.05 to 0.25 wt. % Fe, up to 0.15 wt. % Ti, up to 0.15 wt. % Zn, up to 0.15 wt. % Zr, not greater than 0.04 wt. % V, and not greater than 0.04 wt. % Cr, the balance being aluminum and other elements.
    Type: Grant
    Filed: January 16, 2015
    Date of Patent: January 29, 2019
    Assignee: ARCONIC INC.
    Inventors: Timothy A. Hosch, Russell S. Long
  • Patent number: 10179388
    Abstract: A method for finishing a surface of a metal component is carried out in a receptacle containing a quantity of non-abrasive media. The component is at least partially immersed in the media and a quantity of active finishing chemistry is supplied. The chemistry forms a relatively soft conversion coating on the surface. By inducing high energy relative movement between the surface and the media the coating can be continuously removed. The method may be carried out in a drag finishing machine.
    Type: Grant
    Filed: November 17, 2009
    Date of Patent: January 15, 2019
    Assignee: REM Technologies, Inc.
    Inventors: Gary Sroka, Omer El-Saeed, Frank Reeves
  • Patent number: 10161018
    Abstract: The disclosure provides Pt—P metallic glass-forming alloys and metallic glasses comprising at least two of Ni, Pd, Ag, and Au and optionally Si as well as potentially other elements, where the weight fraction of Pt is between 74 and 91 percent, and where the at least two of Ni, Pd, Ag, and Au contribute to increase the critical rod diameter of the alloy in relation to a Pt—P alloy free of Ni, Pd, Ag, and Au or a Pt—P alloy comprising only one of these elements. In embodiments where the PT850 hallmark is satisfied, alloys according to the disclosure are capable of forming metallic glass rods with diameters in excess of 3 mm, and in some embodiments 30 mm or larger.
    Type: Grant
    Filed: May 19, 2016
    Date of Patent: December 25, 2018
    Assignees: Glassimetal Technology, Inc., Apple Inc.
    Inventors: Jong Hyun Na, Kyung-Hee Han, Maximilien Launey, Marios D. Demetriou, William L. Johnson
  • Patent number: 10138559
    Abstract: Provided is a chemical conversion agent that, with respect to an aluminum metal material, etc., contributes to superior corrosion and moisture resistance, contributes to superior adhesion with a laminate film, and contributes to superior hydrofluoric acid and alkali resistance. The chemical conversion agent includes: one or more type of metal element (A) selected from a group comprising of zirconium, titanium, and hafnium; vanadium element (B); and a resin (C). The resin (C) includes a polyvinyl alcohol resin (C1). The ratio (Wa/Wb) of the weight-based total content (Wa) of the metal element (A) relative to the weight-based content (Wb) of vanadium element (B) is 0.1-15, and the ratio ((Wa+Wb)/Wc1) of the weight-based total content (Wa+Wb) of the metal element (A) and the vanadium element (B) relative to the weight-based total content (Wc1) of the polyvinyl alcohol resin (C1) is 0.25-15.
    Type: Grant
    Filed: April 3, 2014
    Date of Patent: November 27, 2018
    Assignee: NIPPON PAINT SURF CHEMICALS CO., LTD.
    Inventors: Akihiro Mizuno, Norizumi Matsui
  • Patent number: 10124368
    Abstract: A composition to decommission firearms is presented. The composition comprises a monomer, a quantity of calcium chloride; and sulfur-containing compound. The sulfur containing compound includes sodium persulfate and/or sodium thiosulfate.
    Type: Grant
    Filed: May 19, 2015
    Date of Patent: November 13, 2018
    Inventor: John L. Lombardi
  • Patent number: 10113222
    Abstract: The invention relates to an aluminium alloy, the use of an aluminium alloy strip or sheet and a method for producing an aluminium alloy strip or sheet. An aluminium alloy which has only a slight tendency towards intercrystalline corrosion and which at the same time provides high levels of strength and good deformability and which contains standard alloy components so that the recycling of the aluminium alloy is simplified is provided herein.
    Type: Grant
    Filed: February 9, 2015
    Date of Patent: October 30, 2018
    Assignee: Hydro Aluminium Rolled Products GmbH
    Inventors: Olaf Engler, Henk-Jan Brinkman, Thomas Hentschel, Eike Brünger
  • Patent number: 10100385
    Abstract: A high-formability, super-high-strength, hot-dip galvanized steel plate, the chemical composition of which comprises, based on weight percentage, C: 0.15-0.25 wt %, Si: 1.00-2.00 wt %, Mn: 1.50-3.00 wt %, P?0.015 wt %, S?0.012 wt %, Al: 0.03-0.06 wt %, N?0.008 wt %, and the balance of iron and unavoidable impurities. The room temperature structure of the steel plate comprises 10-30% ferrite, 60-80% martensite and 5-15% residual austenite. The steel plate has a yield strength of 600-900 MPa, a tensile strength of 980-1200 MPa, and an elongation of 15-22%. Through an appropriate composition design, a super-high-strength, cold rolled, hot-dip galvanized steel plate is manufactured by continuous annealing, wherein no expensive alloy elements are added; instead, remarkable increase of strength along with good plasticity can be realized just by appropriate augment of Si, Mn contents in combination with suitable processes of annealing and furnace atmosphere control.
    Type: Grant
    Filed: February 21, 2013
    Date of Patent: October 16, 2018
    Assignee: Baoshan Iron & Steel Co., Ltd.
    Inventors: Yong Zhong, Li Wang, Weijun Feng, Liyang Zhang
  • Patent number: 10041164
    Abstract: This present invention provides a method for preparing a stainless reinforcing steel bar resistant to corrosion of chloride ions, and belongs to the technical field of corrosion-resistant materials.
    Type: Grant
    Filed: March 15, 2016
    Date of Patent: August 7, 2018
    Assignee: UNIVERSITY OF SCIENCE AND TECHNOLOGY BEIJING
    Inventors: Xiaogang Li, Xuequn Cheng, Chaofang Dong, Cuiwei Du, Dawei Zhang
  • Patent number: 9945018
    Abstract: Aluminum iron based alloys and methods for producing the same are provided. In an exemplary embodiment, a method for producing an aluminum iron based alloy includes melting an aluminum iron based alloy to form a melt. The aluminum iron based alloy includes iron at about 2.0 to about 7.5 weight percent, silicon at about 0.5 to about 3.0 weight percent, aluminum at about 86 to about 97.5 weight percent, and one or more of manganese, vanadium, chromium, molybdenum, tungsten, niobium, zirconium, cerium, erbium, magnesium, calcium, scandium, ytterbium, yttrium, or tantalum at about 0.05 to about 3.5 weight percent. The melt is solidified at about 105 degrees centigrade per second of faster to form particulates. The particulates are degassed at a degassing temperature of about 400 to about 500 degrees centigrade.
    Type: Grant
    Filed: November 26, 2014
    Date of Patent: April 17, 2018
    Assignee: HONEYWELL INTERNATIONAL INC.
    Inventor: Krish Krishnamurthy
  • Patent number: 9945020
    Abstract: Provided is a zinc-plated steel sheet for hot pressing having outstanding surface characteristics, comprising: a steel foundation plate comprising a metal surface diffusion layer of which the Gibbs free energy reduction per mole of oxygen during oxidation is less than that of Cr, an aluminum-rich layer containing at least 30 wt. % of aluminum formed on the surface diffusion layer, and a zinc plating layer formed on the aluminum-rich layer. In this way, a metal having a low affinity for oxygen is coated to an effective thickness prior to annealing and thus the creation of annealing oxides at the surface of the steel sheet is suppressed and a uniform zinc plating layer is formed, and alloying of the zinc plating layer is promoted during press-processing heat treatment. Cracking in the steel foundation plate during hot press molding is prevented.
    Type: Grant
    Filed: May 4, 2015
    Date of Patent: April 17, 2018
    Assignee: POSCO
    Inventors: Il-Ryoung Sohn, Jong-Sang Kim, Joong-Chul Park, Yeol-Rae Cho, Jin-Keun Oh, Han-Gu Cho, Bong-Hoon Chung, Jong-Seog Lee
  • Patent number: 9932677
    Abstract: The present invention relates to a method for serial surface treatment of metallic components comprising aluminum surfaces, wherein an alkaline pretreatment is followed by a conversion treatment. According to the invention, the intention during the alkaline pretreatment is that a maximum value for the concentration of dissolved zinc is not exceeded, in order to ensure a sufficient quality of the corrosion-protective coating on the aluminum surface of the components following the surface treatment. In a preferred embodiment, the content of dissolved zinc is effectively held below the respective bath-typical maximum value of dissolved zinc by the addition of compounds constituting a source of sulfide ions. The functionality of the surface treatment can be additionally increased by likewise controlling the content of dissolved aluminum in the alkaline pretreatment such that, by adding compounds constituting a source for silicate anions, a threshold value for dissolved aluminum is not exceeded.
    Type: Grant
    Filed: March 3, 2015
    Date of Patent: April 3, 2018
    Assignee: Henkel AG & Co. KGaA
    Inventors: Jan-Willem Brouwer, Frank-Oliver Pilarek, Kirsten Agnes Lill, Fernando Jose Resano Artalejo, Natascha Henze