Patents Issued in July 17, 2018
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Patent number: 10023917Abstract: Compositions and methods for determining an increased likelihood of a response to a targeted treatment of a cancer disease including isolating genomic DNA from a patient sample, amplifying a fragment of DNA by means of PCR with a specific pair of amplification primers, determining if the amplified fragment comprises a wildtype sequence or a mutation by means of a High Resolution Melting Analysis (HRM), and correlating the presence or absence of a mutation with an increased likelihood of success of said targeted treatment. Respective primer pairs, compositions and kits are also claimed.Type: GrantFiled: December 3, 2015Date of Patent: July 17, 2018Assignee: Roche Molecular Systems, Inc.Inventors: Reinhard Buettner, Stefanie Froehner, Sabine Merkelbach-Bruse, Jasmin Ney, Angelika Roesler
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Patent number: 10023918Abstract: There is provided methods and compositions to diagnose, classify and treat inflammatory bowel disease including ulcerative colitis and Crohn's disease by measuring the levels of certain bacterial taxa and proteins collected from the gut.Type: GrantFiled: March 14, 2014Date of Patent: July 17, 2018Assignee: UNIVERSITY OF OTTAWAInventors: Alain Stintzi, David R. Mack, Daniel Figeys, Walid Abdelfattah Elsayed Mottawea, Turki Saleh A. Abujamel, Cheng-kang Chiang
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Patent number: 10023919Abstract: The invention is directed to methods of extracting nucleic acids from microorganisms or mammalian cells adhered to polymers that are malleable within a living organism and particularly malleable in the oral cavity of the living organism. The invention also provides for method of detecting and quantitating microorganisms that adhere to malleable polymers, such as chewing gum.Type: GrantFiled: March 13, 2014Date of Patent: July 17, 2018Assignee: WM. WRIGLEY JR. COMPANYInventors: Amarnath Maitra, David Morando
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Patent number: 10023920Abstract: DNA amplification methods using novel primers obtained from the novel genes hyvI and hyvII from the Candidatus Liberibacter asiaticus genome are useful for detecting Ca. L. species in plants and insect hosts.Type: GrantFiled: August 2, 2017Date of Patent: July 17, 2018Assignees: The United States of America, as represented by the Secretary of Agriculture, University of Florida Research Foundation, Inc.Inventors: Yong Ping Duan, Lijuan Zhou, John Kent Morgan
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Patent number: 10023921Abstract: The invention provides DNA compositions that relate to transgenic insect resistant maize plants. Also provided are assays for detecting the presence of the maize TC1507 event based on the DNA sequence of the recombinant construct inserted into the maize genome and the DNA sequences flanking the insertion site. Kits and conditions useful in conducting the assays are provided.Type: GrantFiled: November 19, 2014Date of Patent: July 17, 2018Assignees: PIONEER HI-BRED INTERNATIONAL, INC., E. I. DU PONT DE NEMOURS AND COMPANY, DOW AGROSCIENCES LLCInventors: Eric Barbour, James Wayne Bing, Guy A. Cardineau, Robert F. Cressman, Jr., Manju Gupta, Mary E. Hartnett Locke, David Hondred, Joseph W. Keaschall, Michael G. Koziel, Terry EuClaire Meyer, Daniel Moellenbeck, Kenneth Edwin Narva, Wilas Nirunsuksiri, Stephen W. Ritchie, Marjorie L. Rudert, Craig D. Sanders, Aihua Shao, Steven Jeffrey Stelman, David S. Stucker, Laura Ann Tagliani, William M. Van Zante
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Patent number: 10023922Abstract: In some aspects, described herein is a DNA methylation reporter. In some aspects, the DNA methylation reporter comprises a promoter whose activity can be affected by exogenous methylation changes without being independently regulated by the DNA methylation machinery, operably linked to a DNA sequence that encodes a reporter molecule. In some embodiments the DNA methylation reporter comprises (i) a promoter derived from a mammalian imprinted gene promoter; and (ii) a sequence that encodes a reporter molecule that is detectable in individual mammalian cells, wherein the promoter is operably linked to the sequence that encodes the reporter molecule. Also described are nucleic acids that comprise the DNA methylation reporter, cells that have the DNA methylation reporter integrated into their genome, and non-human mammals comprising cells that have the DNA methylation reporter integrated into their genome.Type: GrantFiled: March 23, 2016Date of Patent: July 17, 2018Assignee: Whitehead Institute for Biomedical ResearchInventors: Yonatan Stelzer, Rudolf Jaenisch
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Patent number: 10023923Abstract: A method and device for treating a metal or a molten metal alloy using an addition agent, wherein the addition agent is deposited in a local cavity arranged at the bottom of a treatment ladle and surrounded by a protruding wall, and a closing member connected to movement means is able to form, with the bottom of the treatment ladle, in a low insulating position, a chamber including said local cavity and comprising an intermediate annular space around the small wall. Application to the treatment of a molten cast iron using pure magnesium or magnesium alloy.Type: GrantFiled: June 6, 2014Date of Patent: July 17, 2018Inventor: Mourad Toumi
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Patent number: 10023924Abstract: A method for method for solution hardening of a cold deformed workpiece of a passive alloy containing at least 10% chromium, which method includes dissolving at least nitrogen in the workpiece at a temperature T1, which is higher than the solubility temperature for carbide and/or nitride and lower than the melting point of the passive alloy, wherein dissolution of nitrogen at temperature T1 is performed to obtain a diffusion depth in the range of 50 ?m to 5 mm, and cooling the workpiece after the dissolution step at temperature T1 to a temperature which is lower than the temperature at which carbides and/or nitrides form in the passive alloy, wherein the cooling step takes place in an inert gas not containing nitrogen. Further, a member, such as a lock washer for securing bolts or nuts prepared using the method.Type: GrantFiled: April 25, 2013Date of Patent: July 17, 2018Assignee: EXPANITE TECHNOLOGY A/SInventors: Thomas Lundin Christiansen, Thomas Strabo Hummelshoj, Marcel A. J. Somers
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Patent number: 10023925Abstract: A hot stamped article has a component composition containing, in terms of % by mass, 0.002% to 0.1% of C, 0.01% to 0.5% of Si, 0.5% to 2.5% of Mn+Cr, 0.1% or less of P, 0.01% or less of S, 0.05% or less of t-Al, 0.005% or less of N, and 0.0005% to 0.004% of B which is optionally contained in a case where the Mn+Cr is 1.0% or more, the remainder being Fe and unavoidable impurities. The hot stamped article has a microstructure composed of, in terms of an area ratio, 0% or more and less than 90% of martensite, 10% to 100% of bainite, and less than 0.5% of unavoidable inclusion structures, or a microstructure composed of, in terms of an area ratio, 99.5% to 100% of bainitic ferrite, and less than 0.5% of unavoidable inclusion structures.Type: GrantFiled: May 11, 2012Date of Patent: July 17, 2018Assignee: NIPPON STEEL & SUMITOMO METAL CORPORATIONInventor: Kaoru Kawasaki
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Patent number: 10023926Abstract: The invention relates to a method for the production of martensitic cast steel of high strength and excellent abrasion- and impact-wear resistance, intended for large parts used as anti-wear cladding in crushing and grinding mining operations, having a chemical composition, expressed in percentage by weight, of between 0.35˜0.55% C, 0.60˜1.30% Si, 0.60˜1.40% Mn, 4.5˜6.50% Cr, 0.0˜0.60% Ni, 0.30˜0.60% Mo, 0.0˜0.70% Cu, 0.010˜0.10% Al, 0.0˜0.10% Ti, 0.0˜0.10% Zr, 0.0˜0.050% Nb, less than 0.035% P, less than 0.035% S, less than 0.030% N, optionally 0.0005˜0.005% B, optionally 0.015˜0.080% rare earths, and the rest being iron. The method for the production of cast steel includes smelting, pouring and heat treatment. The smelting can be performed in an electric arc furnace with acidic or basic refractory or an electric induction furnace. Smelting in an electric arc furnace as a normal operation includes melting, oxygen insufflation, blocking, refining and deoxidation.Type: GrantFiled: July 31, 2013Date of Patent: July 17, 2018Assignee: COMPA{umlaut over (N)}ÍA ELECTRO METALÚRGICA S.A.Inventors: Ricardo Leiva Illanes, Raoul Meunier Artigas
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Patent number: 10023927Abstract: A hardening tool is disclosed for producing hardened profiled shaped articles from a sheet steel material, which hardening tool has at least two tool parts which are movable relative to one another and between which a heated sheet steel material which has been preformed into a profiled shaped article and is optionally finally formed and is cooled in a hardening process, wherein the hardening tool has a mold core which, during the hardening process, is arranged in a recess of the profiled shaped article, and wherein the mold core has at least one outlet opening for the pressurization of cooling medium from a cooling medium duct on the profiled shaped article.Type: GrantFiled: July 2, 2015Date of Patent: July 17, 2018Assignees: ThyssenKrupp Steel Europe AG, ThyssenKrupp AGInventors: Sascha Sikora, Jorg Gorschlüter, Thomas Flehmig
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Patent number: 10023928Abstract: A 700 Mpa-level high-strength hot rolling Q&P steel and the method of manufacturing the same, which steel has the chemical compositions in weight percentage as follows: C: 0.15%˜0.40%; Si: 1.0%˜2.0%; Mn: 1.5%˜3.0%; P: less than or equal to 0.015%; S: less than or equal to 0.005%; Al: 0.3%˜1.0%; N: less than or equal to 0.006%; Ti: 0.005%˜0.015%, the remainders being Fe; it having a yield strength of more than or equal to 700 Mpa, a tensile strength of more than or equal to 1300 Mpa and an elongation rate of more than 10%.Type: GrantFiled: March 13, 2014Date of Patent: July 17, 2018Assignee: Baoshan Iron & Steel Co., Ltd.Inventors: Huanrong Wang, Zigang Li, Wei Wang, Jiansu Zhang, Jianye Li
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Patent number: 10023929Abstract: A hot-rolled steel sheet has a composition containing: in mass %, C: 0.01 to 0.2%; Si: 2.5% or less; Mn: 4.0% or less; P: 0.10% or less; S: 0.03% or less; Al: 0.001 to 2.0%; N: 0.01% or less; and O: 0.01% or less, and one kind or a total of two kinds of Ti and Nb for 0.01 to 0.30%. An average effective crystal grain diameter at a sheet thickness ¼ part is 10 ?m or less, and an average effective crystal grain diameter at a part of a range of 50 ?m from a surface is 6 ?m or less. A structure of the steel sheet is tempered martensite or lower bainite, and a volume fraction thereof is 90% or more as a total.Type: GrantFiled: May 16, 2014Date of Patent: July 17, 2018Assignee: NIPPON STEEL & SUMITOMO METAL CORPORATIONInventors: Hiroshi Shuto, Masafumi Azuma, Akifumi Sakakibara, Yuuki Kanzawa, Ken Kimura
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Patent number: 10023930Abstract: A method of manufacturing a high strength stainless steel tube or pipe includes using an online heat treatment equipment line for a seamless steel tube or pipe in which a heating furnace for quenching, equipment for quenching, and a tempering furnace are used in the lower process of a rolling line, arranging cooling facilities capable of cooling a heat treated steel tube or pipe to a temperature of 20° C. or lower between the equipment for quenching and the tempering furnace, and cooling the heat treated steel tube or pipe to a temperature of 20° C. or lower before a tempering treatment is performed.Type: GrantFiled: December 11, 2013Date of Patent: July 17, 2018Assignee: JFE Steel CorporationInventors: Kenichiro Eguchi, Yasuhide Ishiguro
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Patent number: 10023931Abstract: The present invention provides a method of production of hot dip galvannealed steel sheet with excellent workability compared with the Sendzimir method or non-oxidizing furnace method and further with excellent powdering or slidability, that is, a method of production of hot dip galvannealed steel sheet with excellent workability, powdering, and slidability characterized by processing a slab containing, by mass %, C: 0.01 to 0.12%, Mn: 0.05 to 0.6%, Si: 0.002 to 0.1%, P: 0.05% or less, S: 0.03% or less, sol. Al: 0.005 to 0.1%, and N: 0.01% or less and having a balance of Fe and unavoidable impurities by hot rolling, pickling, cold rolling, then annealing at 650 to 900° C., cooling to 250 to 450° C., holding at said temperature range for 120 seconds or more, then cooling to room temperature, pickling, preplating Ni or Ni—Fe without intermediate temper rolling, heating by 5° C./sec or more down to 430 to 500° C., galvanizing in a galvanization bath, wiping, then heating by a rate of temperature rise of 20° C.Type: GrantFiled: March 28, 2007Date of Patent: July 17, 2018Assignee: NIPPON STEEL & SUMITOMO METAL CORPORATIONInventors: Junji Haji, Kaoru Kawasaki, Kiyokazu Ishizuka, Teruaki Yamada
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Patent number: 10023932Abstract: An oriented electrical steel sheet and a method of manufacturing the same are provided, and in a method of manufacturing an oriented electrical steel sheet including processes of producing a hot rolled plate by hot rolling a steel slab, performing or omitting hot rolled plate annealing, performing cold rolling, performing decarburization and nitride annealing, and performing final high temperature annealing, the decarburization and nitride annealing process is performed in a dew point range of 35-55° C., and in the final annealing process, a glassless additive including MgO is applied.Type: GrantFiled: December 26, 2013Date of Patent: July 17, 2018Assignee: POSCOInventors: Min Soo Han, Min Serk Kwon, Soon-Bok Park, Chan-Hee Han
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Patent number: 10023933Abstract: A galvannealed steel sheet having a galvanized layer on a surface thereof is provided, having a composition which contains C: 0.10% to 0.35%, Si: 0.3% to 3.0%, Mn: 0.5% to 3.0%, P: 0.001% to 0.10%, Al: 0.01% to 3.00%, and S: 0.200% or less on a mass basis, the remainder being Fe and incidental impurities. The steel sheet has a SiC/SiO2 ratio of more than 0.20, the SiC/SiO2 ratio being a ratio of SiC amount to SiO2 amount at a depth of 1 ?m or less in the steel sheet from an interface between the steel sheet and the galvanized layer, and Fe in the galvanized layer constitutes 8% to 13% by mass.Type: GrantFiled: January 30, 2015Date of Patent: July 17, 2018Assignee: JFE STEEL CORPORATIONInventors: Minoru Tanaka, Yoshitsugu Suzuki
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Patent number: 10023934Abstract: The present disclosure relates to a high-strength hot-dip galvannealed steel sheet excellent in bake hardenability and bendability and having a component composition containing, in mass %, C: from 0.05 to 0.30%, Si: from 0.5 to 3.0%, Mn: from 0.2 to 3.0%, P: from 0 to 0.10%, S: from 0 to 0.010%, N: form 0 to 0.010%, and Al: from 0.001 to 0.10%, with the remainder being iron and unavoidable impurities. The steel sheet has a steel structure containing, in terms of area percentage, martensite: form 50 to 85% and ferrite: 0% or more and less than 5%, with the remainder being bainite. The steel sheet has a dislocation density of 5.0×1015 m?2 or more, a solute carbon amount of 0.08 mass % or more and a tensile strength of 1180 MPa or more.Type: GrantFiled: March 4, 2015Date of Patent: July 17, 2018Assignee: Kobe Steel, Ltd.Inventors: Kosuke Shibata, Toshio Murakami, Muneaki Ikeda, Michiharu Nakaya
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Patent number: 10023935Abstract: A method of improving metal leach kinetics and recovery during atmospheric or substantially atmospheric leaching of a metal sulfide is disclosed. In some embodiments, the method may comprise the steps of: (a) producing a metal sulfide flotation concentrate; (b) processing the metal sulfide concentrate in a reductive activation circuit that operates at a first redox potential, to produce a reductively-activated metal sulfide concentrate; and, (c) subsequently processing the activated metal sulfide concentrate in an oxidative leach circuit to extract metal values. In some disclosed embodiments, reductive activation steps may be employed prior to oxidative leaching steps (including heap leap leaching or bio-leaching steps). In some embodiments, physico-chemical processing steps may be employed during reductive activation and/or oxidative leaching. Systems for practicing the aforementioned methods are also disclosed.Type: GrantFiled: September 14, 2015Date of Patent: July 17, 2018Assignee: FLSmidth A/SInventors: David J. Chaiko, Frank Baczek, Tom Walters, Sarah (Sally) Rocks, Carlos Eyzaguirre
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Patent number: 10023936Abstract: Provided is a method of recovering copper and one or more precious metals comprising leaching copper-bearing ore and/or concentrate under atmospheric or slightly pressurized conditions at a temperature below the boiling point of the leach solution in a sulfuric acidic solution in the presence of one or more alkali metal or alkali earth metal halides, whereby the total halide concentration is from 30 to 115 g/L, to dissolve copper and to obtain a leaching liquor comprising copper, sulfur species, and halides in solution. The leaching liquor is then subjected to a solid-liquid separation after which a first aqueous pregnant leach solution and a copper depleted leaching residue are obtained. Copper is purified by solvent extraction from the first aqueous pregnant leach solution to obtain a first copper-containing loaded organic solution and a first aqueous raffinate. The copper containing loaded organic solution is stripped and copper is recovered.Type: GrantFiled: June 6, 2014Date of Patent: July 17, 2018Assignee: OUTOTEC (FINLAND) OYInventors: Kari Valkama, Pia Sinisalo, Janne Karonen, Kari Hietala
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Patent number: 10023937Abstract: An adsorbent for rare earth element and a method for recovering a rare earth element, in which a rare earth element contained in an aqueous solution can be simply and inexpensively adsorbed and recovered, and a rare earth element present in an aqueous solution in combination with a base metal can be selectively adsorbed and recovered. The adsorbent includes a base material and diglycolamic acid introduced into the base material. The method for recovering a rare earth element includes steps of: bringing an aqueous solution containing a rare earth element into contact with the adsorbent for rare earth element to allow the rare earth element to be adsorbed on the adsorbent for rare earth element; and desorbing the rare earth element adsorbed on the adsorbent for rare earth element with an acid of 1 N or less.Type: GrantFiled: September 23, 2015Date of Patent: July 17, 2018Assignee: NATIONAL INSTITUTE OF ADVANCED INDUSTRIAL SCIENCE AND TECHNOLOGYInventors: Takeshi Ogata, Mikiya Tanaka
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Patent number: 10023938Abstract: An object of the present invention is to provide a method according to which a rare earth element can be efficiently recovered from a workpiece containing at least a rare earth element and an iron group element, and also wear and damage to the treatment container can be suppressed, allowing the container to be used repeatedly for a long period of time. The method of the present invention as a means for resolution is characterized in that in the heat treatment of an oxidation-treated workpiece in the presence of carbon, when the oxidation-treated workpiece is placed in a treatment container, a carbon substance is interposed between the oxidation-treated workpiece and the bottom surface of the container, and the heat treatment is performed in an inert gas atmosphere or in vacuum at a temperature of 1300° C. or more.Type: GrantFiled: May 29, 2014Date of Patent: July 17, 2018Assignee: HITACHI METALS, LTD.Inventors: Hiroyuki Hoshi, Yu Miyamoto
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Patent number: 10023939Abstract: A unique sequence of steps is provided to reduce contaminants along one or more surfaces and faces of gold evaporative sources without deleteriously impacting the structure of the gold evaporative sources. Edges are deburred; contaminants are successfully removed therealong; and surface smoothness is substantially retained. The resultant gold evaporative source is suitable for use in evaporative processes as a precursor to gold film deposition without the occurrence or a substantial reduction in the likelihood of spitting by virtue of significantly reduced levels of contaminants, in comparison to gold evaporative sources subject to a standard cleaning protocol.Type: GrantFiled: September 26, 2017Date of Patent: July 17, 2018Assignee: PRAXAIR S.T. TECHNOLOGY, INC.Inventors: Wendell R. Stuber, Ernesto Aviles, Jaydeep Sarkar, Paul S. Gilman
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Patent number: 10023940Abstract: A copper alloy consisting of two or more of Cr, Ti and Zr, and the balance Cu and impurities, in which the relationship between the total number N and the diameter X satisfies the following formula (1). Ag, P, Mg or the like may be included instead of a part of Cu. This copper alloy is obtained by cooling a bloom, a slab, a billet, or a ingot in at least in a temperature range from the bloom, the slab, the billet, or the ingot temperature just after casting to 450° C., at a cooling rate of 0.5° C./s or more. After the cooling, working in a temperature range of 600° C. or lower and further heat treatment of holding for 30 seconds or more in a temperature range of 150 to 750° C. are desirably performed. The working and the heat treatment are most desirably performed for a plurality of times. log N?0.4742+17.629×exp(?0.Type: GrantFiled: March 20, 2006Date of Patent: July 17, 2018Assignee: NIPPON STEEL & SUMITOMO METAL CORPORATIONInventors: Yasuhiro Maehara, Mitsuharu Yonemura, Takashi Maeda, Keiji Nakajima, Tsuneaki Nagamichi
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Patent number: 10023941Abstract: By enhancing a stress corrosion cracking resistance in a leadless brass alloy, specifically by suppressing a velocity of propagation of corrosion cracks in the brass alloy, a straight line crack peculiar to the leadless brass alloy is suppressed, a probability of cracks coming into contact with ? phases is heightened and local corrosion on the brass surface is prevented to suppress induction of cracks by the local corrosion, thereby providing a leadless brass alloy contributable to enhancement of the stress corrosion cracking resistance. The present invention is directed to an Sn-containing Bi-based, Sn-containing Bi+Sb-based or Sn-containing Bi+Se+Sb-based leadless brass alloy excellent in stress corrosion cracking resistance, having an ?+? structure or ?+?+? structure and having ? phases distributed uniformly therein at a predetermined proportion to suppress local corrosion and induction of stress corrosion cracks.Type: GrantFiled: December 27, 2012Date of Patent: July 17, 2018Assignee: KITZ CORPORATIONInventors: Hidenobu Tameda, Kazuhito Kurose, Teruhiko Horigome, Tomoyuki Ozasa, Hisanori Terui, Masaru Yamazaki, Hideki Kotsuji
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Patent number: 10023942Abstract: A titanium alloy, components formed thereof, and methods of use are provided. Embodiments of the alloy may be useful in the energy extraction environment. Components formed of the alloy may include subsea or land-based components associated with oil and gas production and drilling.Type: GrantFiled: April 28, 2015Date of Patent: July 17, 2018Assignee: Arconic Inc.Inventors: Ronald W. Schutz, Birendra C. Jena
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Patent number: 10023943Abstract: An Al—Mg—Si-based aluminum alloy includes 0.015 to 0.12 mass % of Sr, the aluminum alloy producing a cast metal structure in which Mg2Si is crystallized in a fine agglomerate form.Type: GrantFiled: April 7, 2016Date of Patent: July 17, 2018Assignees: National University Corporation University of Toyama, Ahresty CorporationInventors: Seiji Saikawa, Gen Okazawa, Hiroshige Niwa, Kiyoshi Terayama, Susumu Ikeno, Emi Yanagihara, Shin Orii, Suguru Takeda
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Patent number: 10023944Abstract: Systems, methods, and compositions for improved warm-forming of light metal alloys, such as aluminum alloys, magnesium alloys, or titanium alloys, are disclosed. The systems and methods relate to pulse thermal processing, engineered plastic deformation, and micro-aging processes, as well as to the application of multi-functional lubricants. The disclosed multifunctional lubricant compositions provide a number of advantages when used in warm-forming processes, and in one embodiment, include organo-titanates and magnesium hydroxide, and in other embodiments an organo-titanate, magnesium hydroxide and boron nitride.Type: GrantFiled: April 1, 2015Date of Patent: July 17, 2018Assignee: HONDA MOTOR CO., LTD.Inventors: Kevin S. Schnipke, Alex W. Kawczak, Philip Vais, Peter Schupska, Ryan M. Hahnlen, Joshua P. Dowd
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Patent number: 10023945Abstract: A molten bath-based direct smelting process comprises controlling the process conditions in a direct smelting vessel so that molten slag in a molten bath of metal and slag in the vessel has a viscosity in a range of 0.5-5 poise when the slag temperature is in a range of 1400-1550° C. in the molten bath in the vessel.Type: GrantFiled: May 18, 2011Date of Patent: July 17, 2018Assignee: Tata Steel LimitedInventors: Rodney James Dry, Jacques Pilote
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Patent number: 10023946Abstract: Provided are a thick steel plate with which a welded joint having good CTOD property is formed by low-to-medium heat input multipass welding and a method for producing the thick steel plate. The steel plate has a composition containing, by mass, C: 0.03% to 0.10%, Si: 0.5% or less, Mn: 1.0% to 2.0%, P: 0.015% or less, S: 0.0005% to 0.0050%, Al: 0.005% to 0.060%, Ni: 0.5% to 2.0%, Ti: 0.005% to 0.030%, N: 0.0015% to 0.0065%, O: 0.0010% to 0.0050%, Ca: 0.0005% to 0.0060%, and, as needed, one or more elements such as Cu. Ti/N, Ceq, Pcm, and ACR each fall within the specific range. The effective crystal grain size of the base metal at the center of the plate in the thickness direction is 20 ?m or less. A specific amount of a composite inclusion including a sulfide containing Ca and Mn and an oxide containing Al having an equivalent circular diameter of 0.1 ?m or more is present at the ¼-thickness position and the ½-thickness position of the plate.Type: GrantFiled: March 5, 2014Date of Patent: July 17, 2018Assignee: JFE Steel CorporationInventors: Yusuke Terazawa, Katsuyuki Ichimiya, Kazukuni Hase, Shigeru Endo
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Patent number: 10023947Abstract: High strength steel plate with an ultimate tensile strength of 900 MPa or more which is excellent in hydrogen embrittlement resistance characterized in that, in the structure of the steel plate, (a) by volume fraction, ferrite is present in 10 to 50%, bainitic ferrite and/or bainite in 10 to 60%, and tempered martensite in 10 to 50%, and (b) iron-based carbides which contain Si or Si and Al in 0.1% or more are present in 4×108 (particles/mm3) or more.Type: GrantFiled: November 30, 2010Date of Patent: July 17, 2018Assignee: NIPPON STEEL & SUMITOMO METAL CORPORATIONInventors: Masafumi Azuma, Noriyuki Suzuki, Naoki Maruyama, Akinobu Murasato, Yasuharu Sakuma, Hiroyuki Kawata, Chisato Wakabayashi
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Patent number: 10023948Abstract: Endodontic instruments for use in performing root canal therapy on a tooth are disclosed. In one form, the instruments include an elongate shank having a cutting edge extending from a distal end of the shank along an axial length of the shank. The shank comprises a titanium alloy, and the shank is prepared by heat-treating the shank at a temperature above 25° C. in an atmosphere consisting essentially of a gas unreactive with the shank. In another form, the endodontic instruments have an elongate shank having a cutting edge extending from a distal end of the shank along an axial length of the shank. The shank consists essentially of a titanium alloy selected from alpha-titanium alloys, beta-titanium alloys, and alpha-beta-titanium alloys. The instruments solve the problems encountered when cleaning and enlarging a curved root canal.Type: GrantFiled: May 27, 2015Date of Patent: July 17, 2018Assignee: GOLD STANDARD INSTRUMENTS, LLCInventor: Neill Hamilton Luebke
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Patent number: 10023949Abstract: Endodontic instruments for use in performing root canal therapy on a tooth are disclosed. In one form, the instruments include an elongate shank having a cutting edge extending from a distal end of the shank along an axial length of the shank. The shank comprises a titanium alloy, and the shank is prepared by heat-treating the shank at a temperature above 25° C. in an atmosphere consisting essentially of a gas unreactive with the shank. In another form, the endodontic instruments have an elongate shank having a cutting edge extending from a distal end of the shank along an axial length of the shank. The shank consists essentially of a titanium alloy selected from alpha-titanium alloys, beta-titanium alloys, and alpha-beta-titanium alloys. The instruments solve the problems encountered when cleaning and enlarging a curved root canal.Type: GrantFiled: May 27, 2015Date of Patent: July 17, 2018Assignee: GOLD STANDARD INSTRUMENTS, LLCInventor: Neill Hamilton Luebke
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Patent number: 10023950Abstract: The purpose is providing a vapor deposition mask with high rigidity which can evaporate a uniform thickness film. A vapor deposition mask including a mask body having a main opening, a side surface of the main opening, an upper surface intersecting the side surface, and a lower surface opposing the upper surface, a first insulator contacting the lower surface, and a second insulator contacting the upper and side surfaces, wherein the first insulator includes a first region inside the main opening, and a first opening in the first region, the second insulator includes a second region inside the main opening, and a second opening in the second region, the mask body is sandwiched between the first and second insulators, and one of the first and second insulators includes a region located inside the main opening more centrally than the other and not overlapping with the other and the mask body.Type: GrantFiled: October 5, 2015Date of Patent: July 17, 2018Assignee: Japan Display Inc.Inventors: Toshihiro Sato, Takeshi Ookawara
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Patent number: 10023951Abstract: A method to increase the damping of a substrate using a face-centered cubic ferromagnetic damping material.Type: GrantFiled: June 19, 2017Date of Patent: July 17, 2018Inventor: Mo-How Herman Shen
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Patent number: 10023952Abstract: A coated cutting tool and a hard and wear resistant coating for a body include at least one metal based nitride layer. The layer is (ZrxCrl-x-y-zAlyMez)Na with 0.55<x<0.85, 0.05<y<0.45, 0?z<0.20, 0.95<a<1.10, and Me is one or more of the elements: Y, Ti, V, Nb, Ta, Mo, W, Mn or Si. The layer can have a thickness between 0.5 ?m and 15 ?m and be comprisied of a single cubic phase or a single hexagonal phase or a mixture thereof. In an exemplary embodiment, the layer is a cubic phase of a sodium chloride structure. The layer can be deposited using cathodic arc evaporation and is useful for metal cutting applications generating high temperatures.Type: GrantFiled: September 5, 2013Date of Patent: July 17, 2018Assignee: SECO TOOLS ABInventors: Magnus Oden, Rikard Forsen, Mats Johansson-Joesaar, Syed Muhammad Bilal, Naureen Ghafoor
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Patent number: 10023953Abstract: A method for making a sputtering target including steps of encapsulating and hot isostatically pressing at least one mass of metal powder (e.g., tantalum), having a particle size ranging from about 10 to about 1000 ?m, with at least about 10 percent by weight of particles having a particle size greater than about 150 ?m (for example, about 29 to about 56 percent (e.g., about 35 to about 47 percent) by weight of the particles in the at least one mass of metal powder having a particle size that is larger than 150 microns, but below about 250 ?m), for defining at least a portion of a sputtering target body, having an essentially theoretical random and substantially uniform crystallographic texture.Type: GrantFiled: April 8, 2015Date of Patent: July 17, 2018Assignee: H.C. STARCK INC.Inventors: Patrick Hogan, Paul Aimone, Joseph Flanigan, Marcel Hagymasi, Helmut Haas
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Patent number: 10023954Abstract: Slit valve apparatuses are described. In one aspect, a slit valve apparatus is disclosed having a gate with at least one sealing surface, a blocker element, and a connector member that structurally connects the gate and the blocker element. Systems and methods including the slit valve apparatus are also disclosed, as are numerous other aspects.Type: GrantFiled: September 10, 2012Date of Patent: July 17, 2018Assignee: Applied Materials, Inc.Inventors: John J. Mazzocco, Dale Robert Du Bois, Juan Carlos Rocha-Alvarez
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Patent number: 10023955Abstract: A method of creating a layer of a target deposit-material, in a first target pattern, on a substrate surface. The substrate surface is placed in a vacuum and exposed to a first chemical vapor, having precursor molecules for a seed deposit-material, thereby forming a first substrate surface area that has adsorbed the precursor molecules. Then, a charged particle beam is applied to the first substrate surface area in a second target pattern, largely identical to the first target pattern thereby forming a seed layer in a third target pattern. The seed layer is exposed to a second chemical vapor, having target deposit-material precursor molecules, which are adsorbed onto the seed layer. Finally, a laser beam is applied to the seed layer and neighboring area, thereby forming a target deposit-material layer over and about the seed layer, where exposed to the laser beam.Type: GrantFiled: August 31, 2012Date of Patent: July 17, 2018Assignee: FEI CompanyInventors: Steven Randolph, Marcus Straw
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Patent number: 10023956Abstract: Methods and apparatuses for conditioning chambers using a two-stage process involving a low bias and a high bias stage are provided. Methods also involve clamping a protective electrostatic chuck cover to a pedestal by applying a bias to the electrostatic chuck during the high bias stage while cooling the protective electrostatic chuck cover, such as by flowing helium to the backside of the cover.Type: GrantFiled: April 9, 2015Date of Patent: July 17, 2018Assignee: Lam Research CorporationInventors: Lin Cui, Jason Daejin Park
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Patent number: 10023957Abstract: The present invention relates to an apparatus and method for processing a surface of a substrate by subjecting the surface to successive surface reactions of a first and second precursor. The apparatus includes a nozzle head having two or more precursor nozzles and a moving mechanism for moving the nozzle head in non-linear oscillating movement in a first and second movement direction between a first extreme position and a second extreme position via a center position. The moving mechanism includes first driving means for accelerating the nozzle head in the first moving direction and decelerating the nozzle head in the second moving direction and second driving means for accelerating the nozzle head in the second moving direction and decelerating the nozzle head in the first moving direction.Type: GrantFiled: July 8, 2013Date of Patent: July 17, 2018Assignee: BENEQ OYInventors: Mika Jauhiainen, Pekka Soininen
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Patent number: 10023958Abstract: Provided are methods for the deposition of films comprising SiCN. Certain methods involve exposing a substrate surface to a silicon precursor, wherein the silicon precursor is halogenated with Cl, Br or I, and the silicon precursor comprises a halogenated silane, a halogenated carbosilane, an halogenated aminosilane or a halogenated carbo-sillyl amine. Then, the substrate surface can be exposed to a nitrogen-containing plasma or a nitrogen precursor and densification plasma.Type: GrantFiled: November 5, 2014Date of Patent: July 17, 2018Assignee: Applied Materials, Inc.Inventors: Victor Nguyen, Ning Li, Mihaela Balseanu, Li-Qun Xia, Mark Saly, David Thompson
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Patent number: 10023959Abstract: Showerheads for semiconductor processing equipment are disclosed that include various features designed to minimize or eliminate non-uniform gas delivery across the surface of a wafer due to gas flow transients within the showerhead.Type: GrantFiled: May 24, 2016Date of Patent: July 17, 2018Assignee: Lam Research CorporationInventors: Edward Sung, Colin F. Smith, Shawn M. Hamilton
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Patent number: 10023960Abstract: Embodiments related to hardware and methods for processing a semiconductor substrate are disclosed. One example film deposition reactor includes a process gas distributor including a plasma gas-feed inlet located to supply plasma gas to a plasma generation region within the film deposition reactor and a precursor gas-feed inlet located to supply film precursor gas downstream of the plasma generation region; an insulating confinement vessel configured to maintain a plasma generation region at a reduced pressure within the film deposition reactor and an inductively-coupled plasma (ICP) coil arranged around a portion of a sidewall of the insulating confinement vessel and positioned so that the sidewall separates the plasma generation region from the ICP coil; and a susceptor configured to support the semiconductor substrate so that a film deposition surface of the semiconductor substrate is exposed to a reaction region formed downstream of the process gas distributor.Type: GrantFiled: March 22, 2017Date of Patent: July 17, 2018Assignee: ASM IP Holdings B.V.Inventors: Fred Alokozai, Robert Brennan Milligan
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Patent number: 10023961Abstract: An installation, comprising a chamber comprising two ends, a transport unit and a support unit which introduce a two-sided substrate into the chamber, a stabilized high-voltage high-frequency power supply of at least 200 kW, comprising an HF transformer comprising a primary and a secondary circuit connected to terminals, at least two electrodes being connected to the terminals of the secondary circuit, said electrodes being placed on each side of the substrate, at least one dielectric barrier placed between the at least two electrodes; a power supply regulation/control unit placed upstream of the HF transformer that is capable of increasing an active power/reactive power ratio, an introducing unit for introducing at least one reactive substance into the chamber, and an extracting unit for extracting residual substances, wherein an adjustable inductor is placed in the secondary circuit of the transformer in parallel with a circuit comprising the at least two electrodes, and the adjustable inductor enables a phType: GrantFiled: April 29, 2014Date of Patent: July 17, 2018Assignee: AGC Glass EuropeInventors: Eric Tixhon, Joseph Leclercq, Eric Michel
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Patent number: 10023963Abstract: A corrosion resistant article including an aluminum substrate and a corrosion-inhibiting cerium based corrosion inhibitor corrosion inhibiting additive on the aluminum substrate, the corrosion inhibiting additive comprising an anodic corrosion inhibitor and a cathodic corrosion inhibitor, the anodic corrosion inhibitor greater than 25 wt % of the total inhibitor.Type: GrantFiled: June 6, 2016Date of Patent: July 17, 2018Assignee: United Technologies CorporationInventors: Zhongfen (Vivian) Ding, Georgios S Zafiris, Weilong Zhang, Michael A Kryzman, Catalin G Fotache, Mark R Jaworowski
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Patent number: 10023964Abstract: Various break-resistant anode assemblies and method of installing the same in the ground are disclosed. Each anode assembly (20) basically comprises an anode (22), at least one pulling cable (24), and a protective nose cone (26). The nose cone is a hollow member receiving the leading end (22A) of the anode and from which the anode's electrical conductor (28) extends. The nose cone includes a tapered leading surface (32) that facilitates and guides the anode assembly as it is pulled through the ground, while protecting the anode. A break-away mechanism (54) may also be provided to ensure that no more than a maximum pulling force is applied to the anode assembly during its installation to ensure that the anode is not damaged.Type: GrantFiled: January 10, 2014Date of Patent: July 17, 2018Assignee: Matcor, Inc.Inventors: Theodore Andrew Huck, William Raymond Schutt, Knut Thomas Fenner
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Patent number: 10023965Abstract: Buffer generators are described based on electrodialytic devices. The methods of using these devices can generate buffers for diverse applications, including separations, e.g., HPLC and ion chromatography. Also provided are chromatographic devices including the buffer generators, generally located upstream from a chromatography column, sample injector valve or both.Type: GrantFiled: August 23, 2012Date of Patent: July 17, 2018Assignees: Board of Regents, The University of Texas System, Dionex CorporationInventors: Purnendu K. Dasgupta, Yongjing Chen, Kannan Srinivasan
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Patent number: 10023966Abstract: A bipolar electrolytic cell particularly useful for electrochemical processes carried out with periodic reversal of polarity is provided. The cell is equipped with a series of concentric electrode pairs, the innermost pair and the outermost pair being connected to the poles of a DC generator and the intermediate pairs acting as bipolar electrodes. The different pairs of electrodes are arranged and connected in such a way that, at each stage of the process, the overall cathodic area is equal to the anodic area.Type: GrantFiled: December 3, 2014Date of Patent: July 17, 2018Assignee: INDUSTRIE DE NORA S.P.A.Inventor: Mariachiara Benedetto
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Patent number: 10023967Abstract: An electrochemical device comprises an anode and a cathode. An electrocatalyst mixture is placed between said anode and cathode. The electrocatalyst mixture comprises at least one Catalytically Active Element and, separately, at least one Helper Catalyst comprising an organic molecule, an organic ion, or a mixture of organic molecules and organic ions. The electrocatalyst mixture electrochemically converts carbon dioxide to one or more carbonaceous reaction products via the reaction: CO2+2e?+2H+?carbonaceous reaction products, at overpotentials of 0.9 V or less.Type: GrantFiled: January 8, 2015Date of Patent: July 17, 2018Assignee: Dioxide Materials, Inc.Inventors: Richard I. Masel, Brian A. Rosen