Patents Examined by Jacob J Gusewelle
  • Patent number: 11389875
    Abstract: The purpose of the present invention is to provide a process for producing nickel powder capable of obtaining fine nickel powder in wet process, and also, capable of decreasing content of impurities by medicament (additive) used in crystallization of nickel powder which is reduction reaction. 1.
    Type: Grant
    Filed: December 5, 2017
    Date of Patent: July 19, 2022
    Assignee: SUMITOMO METAL MINING CO., LTD.
    Inventors: Junji Ishii, Hiroyuki Tanaka, Masaya Yukinobu
  • Patent number: 11359259
    Abstract: A recycling process that facilitates separation of materials from metallic substrates by cryogenically cooling the recyclable items to induce embrittlement of the metals. Embrittled metals may be shattered more efficiently and with a higher yield of materials bound to the metallic substrates. Metal embrittlement may be induced by mixing the source stream with liquid nitrogen, and cooling the stream to approximately minus 200° F. Multiple recovery stages may be employed to maximize the yield of the target materials. Embodiments may enable recovery of platinum group metals (PGMs) from catalytic converters with metallic foil substrates. Yield of PGMs may be enhanced by employing a primary recovery stage and a secondary recovery stage, by cryogenically cooling input materials for each stage, by mixing the pulverized material in secondary recovery with an aqueous solution to dissipate attractive charges, and by wet screening the pulverized material slurry to obtain the PGM particles.
    Type: Grant
    Filed: May 21, 2021
    Date of Patent: June 14, 2022
    Assignee: PGM RECOVERY SYSTEMS, INC.
    Inventor: Edmund Schwenk
  • Patent number: 11352679
    Abstract: A steel product includes the following chemical composition in wt. %: C: 0.01 to <0.3, Mn: 4 to <10, Al: 0.003 to 2.9, Mo: 0.01 to 0.8, Si: 0.02 to 0.8, Ni: 0.005 to 3, P: <0.04, S: <0.02, N: <0.02, with the remainder being iron including unavoidable steel-associated elements, wherein an alloy composition satisfies the equation 6<1.5 Mn+Ni<8; or the equation 0.11<C+Al<3, or an alloy composition contains, in addition to Ni, at least one or more of the elements, in wt. %, B: 0.0005 to 0.014; V: 0.006 to 0.1; Nb: 0.003 to 0.1; Co: 0.003 to 3; W: 0.03 to 2 or Zr: 0.03 to 1. The steel product has a microstructure of 2 to 90 vol. % austenite, less than 40 vol. % ferrite and/or bainite, with the remainder being martensite.
    Type: Grant
    Filed: October 27, 2017
    Date of Patent: June 7, 2022
    Assignee: Salzgitter Flachstahl GmbH
    Inventors: Peter Palzer, Manuel Otto, Kai Köhler, Thomas Evertz
  • Patent number: 11326229
    Abstract: Provided is a monatomic amorphous palladium, a method for preparing the same and use thereof. The method comprises a) loading a monatomic palladium powder on a silicon nitride substrate; b) heating the silicon nitride substrate loaded with the monatomic palladium powder obtained in a) up to a temperature of 800° C. to 1000° C. and keeping the temperature for at least 3 minutes; and c) cooling a system of palladium and silicon nitride obtained in b) to room temperature at an apparent cooling rate greater than 103° C./second, thus obtaining the monatomic amorphous palladium.
    Type: Grant
    Filed: February 27, 2018
    Date of Patent: May 10, 2022
    Assignee: SOUTH UNIVERSITY OF SCIENCE AND TECHNOLOGY OF CHINA
    Inventors: Jiaqing He, Dongsheng He, Yi Huang, Yi Zhou
  • Patent number: 11293085
    Abstract: A MnAl alloy according to the present invention exhibits metamagnetism and has crystal grains containing a ?-MnAl phase and crystal grains containing a ?2-MnAl phase and a ?-MnAl phase. When the ratio of the ?-MnAl phase is A, 75%?A?99% is preferably satisfied, and when the ratios of the ?2-MnAl phase and ?-MnAl phase are B and C, respectively, B<C is preferably satisfied. Thus, it is possible to obtain metamagnetism over a wide temperature range, particularly, over a temperature range of ?100° C. to 200° C. and to enhance saturation magnetization.
    Type: Grant
    Filed: June 26, 2019
    Date of Patent: April 5, 2022
    Assignee: TDK CORPORATION
    Inventor: Suguru Satoh
  • Patent number: 11268175
    Abstract: An aspect of the present invention relates to a high-strength steel, having excellent fracture initiation resistance and fracture propagation arrestability at low temperature.
    Type: Grant
    Filed: December 22, 2017
    Date of Patent: March 8, 2022
    Assignee: POSCO
    Inventors: Kyung-Keun Um, Woo-Gyeom Kim, Woo-Yeol Cha, Jin-Woo Chae
  • Patent number: 11261508
    Abstract: An object of the present invention is to provide a Mn-based alloy exhibiting metamagnetism over a wide temperature range. A MnAl alloy according to the present invention exhibits metamagnetism and has crystal grains containing a ?-MnAl phase and crystal grains containing a ?2-MnAl phase. Assuming that the area of the crystal grains containing the ?-MnAl phase in a predetermined cross section is B, and the area of the crystal grains containing the ?2-MnAl phase therein is A, the value of B/A is 0.2 or more and 21.0 or less. When the ratio of the areas between the crystal grains containing the ?-MnAl phase and those containing the ?2-MnAl phase is controlled within the above range, metamagnetism is imparted to the MnAl alloy and, thus, it is possible to obtain metamagnetism over a wide temperature range, particularly, over a temperature range of ?100° C. to 200° C.
    Type: Grant
    Filed: March 9, 2018
    Date of Patent: March 1, 2022
    Assignee: TDK CORPORATION
    Inventor: Suguru Satoh
  • Patent number: 11247267
    Abstract: The present invention relates to a device (1) for sintering by pulsating current, the device (1) comprising: —a sintering cell (4) comprising two walls (14a, 14b) facing each other and defining between them a cavity (C) for receiving material to be sintered, —a press (2) arranged for moving one of the walls (14a, 14b) towards the other wall, so as to compress the material, when the material is received in the cavity (C), —means (10a, 10b) of rotating one of the walls (14a, 14b) relative to the other wall, so as to apply a torsional force to the material, when the material is compressed in the cavity (C).
    Type: Grant
    Filed: November 7, 2017
    Date of Patent: February 15, 2022
    Assignee: SORBONNE UNIVERSITE
    Inventors: Yann Le Godec, Sylvie Le Floch, Stephane Pailhes, Jean-Michel Combes
  • Patent number: 11230746
    Abstract: The invention relates to a method and an apparatus for the targeted heat treatment of specific component zones of a steel component. A predominantly austenitic structure can be created in the steel component in one or more first regions, from which, by quenching, a majority martensitic microstructure can be created; and in one or more second regions, a majority bainitic microstructure can be created, wherein the steel component is initially heated in a furnace to a temperature above the AC3 temperature, the steel component is subsequently transferred into a treatment station, and can cool down during the transfer, and in the treatment station, the one or more second regions of the steel component are cooled down to a cooling finish temperature ?2 during a treatment time.
    Type: Grant
    Filed: January 25, 2017
    Date of Patent: January 25, 2022
    Assignee: Schwartz GmbH
    Inventors: Frank Wilden, Jörg Winkel, Andreas Reinartz
  • Patent number: 11162164
    Abstract: The present invention relates a method of producing a copper-titanium (Cu—Ti)-based copper alloy, and provides a method of producing a copper alloy material for automobile and electrical/electronic components requiring high performance by satisfying high strength and bendability together.
    Type: Grant
    Filed: September 21, 2018
    Date of Patent: November 2, 2021
    Assignee: Poongsan Corporation
    Inventors: Cheol Min Park, Jun Hyung Kim, Hyo Moon Nam, Sun Young Mun
  • Patent number: 11149327
    Abstract: A method and a device for heating a sheet metal blank or a formed sheet metal component above the austenitization temperature for the purpose of quench hardening, wherein the dew point of the furnace atmosphere is set to ?15° C. to 15° C., preferably to ?10° C. to 10° C., in particular for the formation of a loosely adhering oxide skin, for controlling an oxide skin on the sheet metal or component coated with a metallic corrosion protection layer or an uncoated sheet metal or component.
    Type: Grant
    Filed: May 24, 2019
    Date of Patent: October 19, 2021
    Assignees: voestalpine Automotive Components Cartersville Inc., Bayerische Motoren Werke Aktiengesellschaft
    Inventors: Wilhelm Weinmeister, Markus Pfestorf
  • Patent number: 11081265
    Abstract: A rare-earth sintered magnet contains main phase crystal grains having an Nd5Fe17-type crystal structure, includes R and T (where R represents one or more rare-earth elements that essentially include Sm and T represents Fe or one or more transition metal elements that essentially include Fe and Co), and wherein the compositional ratio of R is 20-40 at % and the remaining portion is substantially T; the remaining portion other than R is substantially only T or only T and C; and when the main phase crystal grains' average grain size in one cross-sectional surface of the rare-earth sintered magnet is defined as Dv, while grain size of individual main phase crystal grains is defined as Di, Dv is at least 1.0 ?m, and the main phase crystal grains' area ratio that satisfy 0.7Dv?Di?2.0Dv is at least 80% with respect to the area of a cross-sectional surface of the rare-earth sintered magnet.
    Type: Grant
    Filed: November 30, 2017
    Date of Patent: August 3, 2021
    Assignee: TDK CORPORATION
    Inventors: Takurou Iwasa, Ryuji Hashimoto, Masashi Ito