Patents by Inventor Tatsuo Nagata
Tatsuo Nagata has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Publication number: 20230256698Abstract: At least one of a horn or an anvil includes protrusions that protrude from a facing surface thereof. Two panel parts and a gusset part folded and interposed between the panel parts are sandwiched and compressed by the horn and the anvil. Two portions of the gusset part are welded to each other by ultrasonic vibration of the horn during the sandwiching and compressing.Type: ApplicationFiled: May 19, 2021Publication date: August 17, 2023Applicant: Totani CorporationInventors: Mikio TOTANI, Hiroshi NAGATA, Tatsuo ODANI
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Patent number: 11661726Abstract: A tooth attachment structure for a bucket includes a tooth, a pin member, and a lock member. The tooth includes a guide groove provided on an inner surface of the tooth and a pin hole provided in the guide groove. The pin member is disposed in the pin hole. The lock member is disposed in the guide groove. The lock member locks the pin member. The lock member engages the pin member by sliding toward the pin member.Type: GrantFiled: September 9, 2020Date of Patent: May 30, 2023Assignee: KOMATSU LTD.Inventors: Takanori Nagata, Daijirou Tanaka, Yudai Furudate, Tatsuo Aira, Monta Kondou
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Publication number: 20230146305Abstract: A high-strength steel foil for the positive and negative electrode current collectors of nickel-hydrogen secondary batteries which uses a light weight and economical steel foil and which is thin and strong and has excellent rust resistance and resistance to metal ion leaching. Also, a high-strength steel foil for the positive and negative electrode current collectors of nickel-hydrogen secondary batteries which has excellent elongation. The Ni-plated steel foil for hydrogen secondary battery current collectors comprises, by mass %, C: 0.0001 to 0.0200%, Si: 0.0001 to 0.0200%, Mn: 0.005 to 0.300%, P: 0.001 to 0.020%, S: 0.0001 to 0.0100%, Al: 0.0005 to 0.1000%, N: 0.0001 to 0.0040%, one or both of Ti and Nb: 0.800% or less respectively, and a balance of Fe and impurities. The Ni-plated steel foil has an Ni plating layer on both surfaces. The thickness of the Ni plating layer on both surfaces of the Ni-plated steel foil is greater than or equal to 0.Type: ApplicationFiled: March 24, 2021Publication date: May 11, 2023Applicant: NIPPON STEEL Chemical & Material Co., Ltd.Inventors: Hiroto UNNO, Masahiro FUKUDA, Naoki FUJIMOTO, Tatsuo NAGATA
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Publication number: 20230072743Abstract: A Ni-plated steel sheet according to one aspect of the present invention includes a base steel sheet; and a Ni plating layer provided on a surface of the base steel sheet, wherein the Ni plating layer includes a Ni—Fe alloy layer formed on the surface of the base steel sheet, and a ratio of a Sn content to a Ni content in the Ni plating layer is 0.0005% to 0.10%.Type: ApplicationFiled: March 1, 2021Publication date: March 9, 2023Inventors: Yasuto GOTO, Kiyokazu ISHIZUKA, Tatsuo NAGATA, Katsumasa MATSUMOTO
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Patent number: 11387449Abstract: The negative electrode active material according to the present embodiment includes alloy particle containing an alloy component and oxygen of 0.50 to 3.00 mass %. The alloy component contains Sn: 13.0 to 40.0 at % and Si: 6.0 to 40.0 at %. The alloy particle contains: one or two phases selected from a D03 phase in which the Si content is from 0 to 5.0 at % and a ? phase in which the Si content is from 0 to 5.0 at %; one or two phases selected from an ? phase in which the Si content is from 0 to 5.0 at % and an ?? phase in which the Si content is from 0 to 5.0 at %; and an SiOx phase. The alloy particle has, in an X-ray diffraction profile, a peak having a largest integrated diffraction intensity in a range of 42.0 to 44.0 degrees of a diffraction angle 2?.Type: GrantFiled: July 17, 2018Date of Patent: July 12, 2022Assignee: NIPPON STEEL CORPORATIONInventors: Sukeyoshi Yamamoto, Tatsuo Nagata, Koji Moriguchi
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Publication number: 20220216548Abstract: A battery case and method of production of the same realizing smaller size, higher mountability, longer service life, and lower cost than in the past, that is, a battery case comprising a container body and a container cover, in which battery case, one or both of the container body and the container cover are made from a laminated steel sheet comprised of a plated steel sheet on which a film having a polyolefin-based resin as a main constituent is laminated, a joined part of the container body and the container cover has a welded part of the plated steel sheet, a melt bonded part of the film, and a gap part between the welded part and the melt bonded part, where a length of gap part/thickness of plated steel sheet ?10.0 and a length of gap part/length of joined part <0.50, and at least part of the inside surface of the battery case is covered by the film, and a method of production of the same.Type: ApplicationFiled: June 10, 2020Publication date: July 7, 2022Applicant: NIPPON STEEL CORPORATIONInventors: Akinobu KOBAYASHI, Koichi NOSE, Yasuto GOTO, Takehiro TAKAHASHI, Tatsuo NAGATA, Masaharu IBARAGI
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Publication number: 20220085362Abstract: Provided is a negative electrode active material which is excellent in capacity, capacity retention ratio, and a coulombic efficiency when charging/discharging is repeated. The chemical composition of the alloy particles of the negative electrode active material of the present disclosure includes 0.50 to 3.00 mass % of oxygen, and alloy elements containing Sn: 13.0 to 40.0 at % and Si: 6.0 to 40.0 at %, with the balance being Cu and impurities. The structure of the alloy particles includes: one or more types selected from the group consisting of a phase having a D03 structure, and a ? phase; one or more types selected from the group consisting of an ? phase and an ?? phase; and a SiOx phase (x=0.50 to 1.70). The SiOx phase (x=0.50 to 1.70) has a volume fraction of 5.0 to 60.0% and the ?? phase has a volume fraction of 0 to 60.0%.Type: ApplicationFiled: January 17, 2020Publication date: March 17, 2022Applicant: NIPPON STEEL CORPORATIONInventors: Sukeyoshi YAMAMOTO, Tatsuo NAGATA, Shunsuke TANIGUCHI, Takafumi AMINO, Akira TANIYAMA
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Publication number: 20210273232Abstract: The present invention has as its technical issue to secure not only mechanical strength but also conductivity by increasing the contact area with the positive electrode active substance or positive electrode mixture while also securing corrosion resistance to alkali or an electrolytic solution when applying stainless steel foil to a current collector for a positive electrode of a secondary battery so as to deal with the increasingly higher capacities and smaller sizes and lighter weights of lithium ion secondary batteries and has as its object the provision of a current collector for a positive electrode of a secondary battery using such stainless steel foil.Type: ApplicationFiled: June 27, 2019Publication date: September 2, 2021Applicant: NIPPON STEEL CHEMICAL & MATERIAL CO., LTD.Inventors: Tatsuo NAGATA, Hiroto UNNO, Masahiro FUKUDA, Naoki FUJIMOTO
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Patent number: 11056687Abstract: A negative electrode active material is provided that is utilized in a nonaqueous electrolyte secondary battery, and that can improve the capacity per volume and charge-discharge cycle characteristics. The negative electrode active material according to the present embodiment contains an alloy having a chemical composition consisting of, in at %, Sn: 13.0 to 24.5% and Si: 3.0 to 15.0%, with the balance being Cu and impurities. The alloy particles contain a phase with a peak of the most intense diffraction line appearing in a range of 42.0 to 44.0 degrees of a diffraction angle 2?, the most intense diffraction line being a diffraction line having the largest integrated diffraction intensity in an X-ray diffraction profile. A half-width of the most intense diffraction line of the alloy particles is in a range of 0.15 to 2.5 degrees.Type: GrantFiled: May 18, 2017Date of Patent: July 6, 2021Assignee: NIPPON STEEL CORPORATIONInventors: Sukeyoshi Yamamoto, Tatsuo Nagata, Koji Moriguchi
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Publication number: 20200266430Abstract: A negative electrode active material is provided that is utilized in a nonaqueous electrolyte secondary battery, and that can improve the capacity per volume and charge-discharge cycle characteristics. The negative electrode active material according to the present embodiment contains an alloy having a chemical composition consisting of, in at %, Sn: 10.0 to 22.5% and Si: 10.5 to 23.0%, with the balance being Cu and impurities. The alloy has at least one type of phase among an ?? phase, an ? phase and a Sn phase in a Cu—Sn binary phase diagram, and the micro-structure of the alloy includes reticulate regions 20, and island-like regions 10 that are surrounded by the reticulate regions 20. The average size of the island-like regions 10 is, in equivalent circular diameter, 900 nm or less.Type: ApplicationFiled: June 6, 2017Publication date: August 20, 2020Inventors: Sukeyoshi YAMAMOTO, Tatsuo NAGATA, Koji MORIGUCHI
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Publication number: 20200152980Abstract: The negative electrode active material according to the present embodiment includes alloy particle containing an alloy component and oxygen of 0.50 to 3.00 mass %. The alloy component contains Sn: 13.0 to 40.0 at % and Si: 6.0 to 40.0 at %. The alloy particle contains: one or two phases selected from a D03 phase in which the Si content is from 0 to 5.0 at % and a ? phase in which the Si content is from 0 to 5.0 at %; one or two phases selected from an ? phase in which the Si content is from 0 to 5.0 at % and an ?? phase in which the Si content is from 0 to 5.0 at %; and an SiOx phase. The alloy particle has, in an X-ray diffraction profile, a peak having a largest integrated diffraction intensity in a range of 42.0 to 44.0 degrees of a diffraction angle 2?.Type: ApplicationFiled: July 17, 2018Publication date: May 14, 2020Inventors: Sukeyoshi YAMAMOTO, Tatsuo NAGATA, Koji MORIGUCHI
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Patent number: 10381640Abstract: Provided is a negative electrode active material that can improve the capacity per volume and charge-discharge cycle characteristics of a nonaqueous electrolyte secondary battery represented by a lithium ion secondary battery. The negative electrode active material according to the present embodiment contains an alloy phase. The alloy phase undergoes thermoelastic diffusionless transformation when releasing or occluding metal ions. The negative electrode active material of the present embodiment is used in a nonaqueous electrolyte secondary battery. Thermoelastic diffusionless transformation refers to so-called thermoelastic martensitic transformation.Type: GrantFiled: August 27, 2013Date of Patent: August 13, 2019Assignee: NIPPON STEEL CORPORATIONInventors: Sukeyoshi Yamamoto, Noriyuki Negi, Tatsuo Nagata, Koji Moriguchi, Mitsuharu Yonemura, Tomoyuki Kakeshita, Tomoyuki Terai, Takashi Fukuda
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Publication number: 20190190021Abstract: A negative electrode active material is provided that is utilized in a nonaqueous electrolyte secondary battery, and that can improve the capacity per volume and charge-discharge cycle characteristics. The negative electrode active material according to the present embodiment contains an alloy having a chemical composition consisting of, in at %, Sn: 13.0 to 24.5% and Si: 3.0 to 15.0%, with the balance being Cu and impurities. The alloy particles contain a phase with a peak of the most intense diffraction line appearing in a range of 42.0 to 44.0 degrees of a diffraction angle 2?, the most intense diffraction line being a diffraction line having the largest integrated diffraction intensity in an X-ray diffraction profile. A half-width of the most intense diffraction line of the alloy particles is in a range of 0.15 to 2.5 degrees.Type: ApplicationFiled: May 18, 2017Publication date: June 20, 2019Applicant: Nippon Steel & Sumitomo Metal CorporationInventors: Sukeyoshi YAMAMOTO, Tatsuo NAGATA, Koji MORIGUCHI
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Publication number: 20190176224Abstract: A thin metal strip is produced by a single roll strip casting process, using a cooling roll, a tundish, and a molten metal remover. The cooling roll has an outer peripheral surface, on which it cools and solidifies molten metal while rotating. The tundish can accommodate the molten metal and supplies it onto the outer peripheral surface of the cooling roll. The molten metal remover is disposed downstream of the tundish in the rotating direction of the cooling roll with a gap A between the molten metal remover and an outer peripheral surface of the cooling roll, and removes a surface portion of the molten metal on the outer peripheral surface of the cooling roll to cut down the thickness of the molten metal to the width of the gap A.Type: ApplicationFiled: November 29, 2016Publication date: June 13, 2019Inventors: Tatsuo Nagata, Sukeyoshi YAMAMOTO
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Patent number: 10270092Abstract: Provided is a negative electrode active material that can improve the discharge capacity per volume and charge-discharge cycle characteristics. The negative electrode active material according to the present embodiment contains an alloy phase. The alloy phase undergoes thermoelastic diffusionless transformation when releasing metal ions or occluding metal ions. The oxygen content of the negative electrode active material is not more than 5000 ppm in mass.Type: GrantFiled: February 25, 2015Date of Patent: April 23, 2019Assignee: NIPPON STEEL & SUMITOMO METAL CORPORATIONInventors: Sukeyoshi Yamamoto, Tatsuo Nagata, Noriyuki Negi
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Patent number: 10230103Abstract: Provided is a negative electrode active material that can improve the discharge capacity per volume and charge-discharge cycle characteristics. The negative electrode active material of the present embodiment includes a powder material and an oxide layer. The powder material contains an alloy phase which undergoes thermoelastic diffusionless transformation when releasing metal ions or occluding the metal ions. The oxide layer is formed on the surface of the powder material, and has a thickness of not more than 10 nm.Type: GrantFiled: February 25, 2015Date of Patent: March 12, 2019Assignee: NIPPON STEEL & SUMITOMO METAL CORPORATIONInventors: Sukeyoshi Yamamoto, Noriyuki Negi, Tatsuo Nagata
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Patent number: 10128493Abstract: Provided is a negative electrode active material which can improve discharge capacity per amount and charge-discharge cycle characteristics. The negative electrode active material of the present embodiment contains at least one of material A and material B, and material C: material A: carbonaceous powder material in which a ratio of a peak intensity at 1360 cm?1 with respect to a peak intensity at 1580 cm?1 in the Raman spectrum is not more than 0.5; material B: carbonaceous powder material in which a ratio of a peak intensity at 1360 cm?1 with respect to a peak intensity at 1580 cm?1 in the Raman spectrum is more than 0.5; material C: powder material whose main component is an active substance made up of an alloy phase. This alloy phase undergoes thermoelastic diffusionless transformation when releasing metal ions or occluding the metal ions.Type: GrantFiled: February 25, 2015Date of Patent: November 13, 2018Assignee: NIPPON STEEL & SUMITOMO METAL CORPORATIONInventors: Sukeyoshi Yamamoto, Noriyuki Negi, Tatsuo Nagata
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Patent number: 10038184Abstract: Provided is a negative electrode active material that can improve the discharge capacity per volume and/or charge-discharge cycle characteristics. The negative electrode active material according to the present embodiment contains an alloy phase and ceramics. The alloy phase undergoes thermoelastic diffusionless transformation when releasing or occluding metal ions. The ceramics is dispersed in the metal phase. The content of ceramics in the alloy phase is more than 0 to 50 mass % with respect to the total mass of the alloy phase and the ceramics.Type: GrantFiled: February 25, 2015Date of Patent: July 31, 2018Assignee: NIPPON STEEL & SUMITOMO METAL CORPORATIONInventors: Sukeyoshi Yamamoto, Tatsuo Nagata
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Publication number: 20180205082Abstract: An electrode containing a clathrate compound is disclosed that is more likely to withstand load involved in repetition of penetration and desorption of, e.g., lithium ions compared to no guest substance-encapsulating silicon clathrate compounds. An electrode active material making up the electrode according to the present invention includes a clathrate compound. The clathrate compound contains a crystal lattice and a guest substance. The guest substance is encapsulated in the crystal lattice. It is preferable that the clathrate compound be a main component of the electrode active material that makes up the electrode.Type: ApplicationFiled: March 13, 2018Publication date: July 19, 2018Inventors: Noriyuki NEGI, Tatsuo Nagata, Sukeyoshi Yamamoto, Shinji Munetoh
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Publication number: 20170170470Abstract: Provided is a negative electrode active material that can improve the discharge capacity per volume and charge-discharge cycle characteristics. The negative electrode active material according to the present embodiment contains an alloy phase. The alloy phase undergoes thermoelastic diffusionless transformation when releasing metal ions or occluding metal ions. The oxygen content of the negative electrode active material is not more than 5000 ppm in mass.Type: ApplicationFiled: February 25, 2015Publication date: June 15, 2017Inventors: Sukeyoshi YAMAMOTO, Tatsuo NAGATA, Noriyuki NEGI