Patents by Inventor Yoshiaki Suematsu

Yoshiaki Suematsu 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).

  • Patent number: 11413670
    Abstract: Provided is a cooling device, where a hot-finish-rolling mill includes a plurality of nozzles which spray cooling water toward one of or both of upper and lower surfaces of a hot-rolled steel sheet just after rolled by rolling stands, the nozzles are provided on the inside of the upper and lower guides or adjoining to the guides on a downstream side, and a nozzle spray distance changes depending on a position of the nozzle in a rolling direction, wherein a spray angle of the nozzle at a position whose nozzle spray distance is the largest is smaller than a spray angle of the nozzle at a position whose nozzle spray distance is the smallest, and the spray angle of the nozzle becomes the same or smaller as the nozzle spray distance becomes large.
    Type: Grant
    Filed: September 14, 2017
    Date of Patent: August 16, 2022
    Assignee: NIPPON STEEL CORPORATION
    Inventors: Yoshihiro Serizawa, Takayuki Murai, Yoshiaki Suematsu, Satoru Hayashi, Tomoya Nakao, Hiroshi Niitani
  • Patent number: 11279993
    Abstract: A nickel-containing steel plate according to an aspect of the present invention has a chemical composition within a predetermined range, in which an average coarse grain size of prior austenite which is defined as a simple average value of maximum values of equivalent circle diameters of prior austenite grains in each of ten visual fields having an area of 200 ?m2, measured at a ¼t position of the steel plate in a section formed by a rolling direction of the steel plate and a thickness direction of the steel plate is 20 ?m or less, and a tensile strength is 690 MPa to 900 MPa.
    Type: Grant
    Filed: December 27, 2018
    Date of Patent: March 22, 2022
    Assignee: NIPPON STEEL CORPORATION
    Inventors: Hitoshi Furuya, Kentaro Watanabe, Keisuke Mori, Masakazu Asaba, Yoshiaki Suematsu
  • Publication number: 20210222277
    Abstract: A nickel-containing steel plate according to an aspect of the present invention has a chemical composition within a predetermined range, in which an average coarse grain size of prior austenite which is defined as a simple average value of maximum values of equivalent circle diameters of prior austenite grains in each of ten visual fields having an area of 200 ?m2, measured at a ¼t position of the steel plate in a section formed by a rolling direction of the steel plate and a thickness direction of the steel plate is 20 ?m or less, and a tensile strength is 690 MPa to 900 MPa.
    Type: Application
    Filed: December 27, 2018
    Publication date: July 22, 2021
    Applicant: NIPPON STEEL CORPORATION
    Inventors: Hitoshi FURUYA, Kentaro WATANABE, Keisuke MORI, Masakazu ASABA, Yoshiaki SUEMATSU
  • Publication number: 20190210080
    Abstract: Provided is a cooling device, where a hot-finish-rolling mill includes a plurality of nozzles which spray cooling water toward one of or both of upper and lower surfaces of a hot-rolled steel sheet just after rolled by rolling stands, the nozzles are provided on the inside of the upper and lower guides or adjoining to the guides on a downstream side, and a nozzle spray distance changes depending on a position of the nozzle in a rolling direction, wherein a spray angle of the nozzle at a position whose nozzle spray distance is the largest is smaller than a spray angle of the nozzle at a position whose nozzle spray distance is the smallest, and the spray angle of the nozzle becomes the same or smaller as the nozzle spray distance becomes large.
    Type: Application
    Filed: September 14, 2017
    Publication date: July 11, 2019
    Applicant: NIPPON STEEL & SUMITOMO METAL CORPORATION
    Inventors: Yoshihiro SERIZAWA, Takayuki MURAI, Yoshiaki SUEMATSU, Satoru HAYASHI, Tomoya NAKAO, Hiroshi NIITANI
  • Patent number: 7784527
    Abstract: The present invention provides a continuous casting method of steel preventing alumina and other nonmetallic inclusions becoming causes of slivers and argon bubbles becoming causes of blowholes from being entrained and thereby enabling the production of a cast slab superior in surface and internal quality, that is, one giving an inside bore 21 of an immersion nozzle 21 a horizontal sectional shape of an elliptical shape or oblong shape with a length ratio DL/DS of that long axis DL and short axis DS of 1.2 to 3.8, making a direction of that long axis substantially parallel to a long side direction of the casting mold 3, and making the sliding direction of the sliding nozzle 1 a direction perpendicular to said long axis to supply the molten steel in the casting mold 3. Note that a ratio S1/S0 of a sectional area S1 at a smallest sectional area part 23 of the inside bore 21 and a sectional area S0 of a nozzle hole 11 of the sliding nozzle 1 is made 0.5 to 0.
    Type: Grant
    Filed: September 5, 2006
    Date of Patent: August 31, 2010
    Assignee: Nippon Steel Corporation
    Inventors: Toshiaki Mizoguchi, Masanobu Hayakawa, Yoshiaki Suematsu, Akira Mikasa
  • Publication number: 20090266505
    Abstract: The present invention provides a continuous casting method of steel preventing alumina and other nonmetallic inclusions becoming causes of slivers and argon bubbles becoming causes of blowholes from being entrained and thereby enabling the production of a cast slab superior in surface and internal quality, that is, one giving an inside bore 21 of an immersion nozzle 21 a horizontal sectional shape of an elliptical shape or oblong shape with a length ratio DL/DS of that long axis DL and short axis DS of 1.2 to 3.8, making a direction of that long axis substantially parallel to a long side direction of the casting mold 3, and making the sliding direction of the sliding nozzle 1 a direction perpendicular to said long axis to supply the molten steel in the casting mold 3. Note that a ratio S1/S0 of a sectional area Si at a smallest sectional area part 23 of the inside bore 21 and a sectional area S0 of a nozzle hole 11 of the sliding nozzle 1 is made 0.5 to 0.
    Type: Application
    Filed: September 5, 2006
    Publication date: October 29, 2009
    Inventors: Toshiaki Mizoguchi, Masanobu Hayakawa, Yoshiaki Suematsu, Akira Mikasa