Patents by Inventor Shozo Ishibashi

Shozo Ishibashi 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).

  • Publication number: 20230191719
    Abstract: A re-circulatory blasting device obtained is capable of performing stable treatment for a prolonged period of time even in cases in which an elastic abrasive employed has abrasive grains adhered to the surface of elastic cores. An elastic abrasive regeneration device provided to the blasting device regenerates elastic abrasive employed for re-circulation. The elastic abrasive regeneration device includes a mixer and a combining unit. Recovered abrasive fed in from an abrasive recovery section is mixed in the mixer with abrasive grains fed in from an abrasive grain feeder, and the abrasive grains are adhered to the surface of the cores of the recovered abrasive. In the combining unit, the abrasive grains are pressed against and combined to the surface of the cores by passing an aggregated state of the recovered abrasive mixed by the mixer along a constricted flow path having a flow path cross-sectional area that gradually narrows.
    Type: Application
    Filed: February 10, 2023
    Publication date: June 22, 2023
    Inventors: Keiji MASE, Shozo ISHIBASHI, Masatoshi KITAGAMI
  • Patent number: 11660827
    Abstract: A re-circulatory blasting device obtained is capable of performing stable treatment for a prolonged period of time even in cases in which an elastic abrasive employed has abrasive grains adhered to the surface of elastic cores. An elastic abrasive regeneration device provided to the blasting device regenerates elastic abrasive employed for re-circulation. The elastic abrasive regeneration device includes a mixer and a combining unit. Recovered abrasive fed in from an abrasive recovery section is mixed in the mixer with abrasive grains fed in from an abrasive grain feeder, and the abrasive grains are adhered to the surface of the cores of the recovered abrasive. In the combining unit, the abrasive grains are pressed against and combined to the surface of the cores by passing an aggregated state of the recovered abrasive mixed by the mixer along a constricted flow path having a flow path cross-sectional area that gradually narrows.
    Type: Grant
    Filed: September 30, 2020
    Date of Patent: May 30, 2023
    Assignee: FUJI MANUFACTURING CO., LTD.
    Inventors: Keiji Mase, Shozo Ishibashi, Masatoshi Kitagami
  • Publication number: 20230150088
    Abstract: A surface treatment method for preventing adhesion of powder to a powder-contacting member having a surface on which contacted powder flows in the form of a particle layer. The method includes performing surface treatment on the surface such that an arithmetic average peak curvature Spc (1/mm) of the surface is 150 to 400, a peak density Spd (piece/mm2) of the surface is 10000 to 180000, a root mean square gradient Sdq of the surface is 0.05 to 0.30, and an arithmetic average height Sa (?m) of the surface is 0.02 to 3.00, and providing a space where an air layer can exist between the particle layer and the surface.
    Type: Application
    Filed: January 17, 2023
    Publication date: May 18, 2023
    Inventors: Keiji Mase, Shozo Ishibashi, Yusuke Kondo
  • Patent number: 11618127
    Abstract: A method for surface treatment of a DLC coated member that includes: taking as a treatment subject a DLC coated member having a DLC film coated on a base material surface; ejecting substantially spherical ejection particles having a median diameter of from 1 ?m to 20 ?m and a falling time through air of not less than 10 s/m against a surface of the film of the member at an ejection pressure of from 0.01 MPa to 0.7 MPa; and forming dimples on the surface of the film without exposing the base material so that a total projected area of the dimples is 50% or more of a treated region and so that the surface of the DLC film is processed to an arithmetic mean height (Sa) of from 0.01 ?m to 0.1 ?m and a texture aspect ratio (Str) of 0.4 or more.
    Type: Grant
    Filed: September 4, 2019
    Date of Patent: April 4, 2023
    Assignee: FUJI MANUFACTURING CO., LTD.
    Inventors: Keiji Mase, Shozo Ishibashi, Yusuke Kondo
  • Publication number: 20230088680
    Abstract: A fluidized bed or fluidized bed/spouted bed granulator into which urea seed particles, an aqueous urea solution and air are introduced to produce urea particles with an average particle size of 1 mm or more. The granulator includes a box-shaped granulation chamber with a bottom floor, a top and side surfaces. Inner wall surfaces of the chamber are of a metal plate material, an upper part of the side or top surfaces includes an exhaust outlet, the side surfaces or top surface includes an inlet for introducing the seed particles, the side surfaces include a collection port for the particles, the aqueous urea solution is introduced from the bottom floor or the side surfaces, the air is introduced from the bottom floor or the bottom floor and the side surfaces, and at least a portion of the inner wall surfaces of the granulation chamber is treated by surface roughening.
    Type: Application
    Filed: February 8, 2021
    Publication date: March 23, 2023
    Inventors: Keishi SANO, Genshi NISHIKAWA, Kimihito HARUTA, Katsunori YAGOH, Masashi TAKAHASHI, Yuichiro WAKASHIMA, Keiji MASE, Shozo ISHIBASHI, Tetsuya KAWABE
  • Patent number: 11389929
    Abstract: A method for surface treatment of a workpiece made from a hard-brittle material comprises first blasting employing abrasive grains of higher hardness than a hardness of a base material of the workpiece for forming a three dimensional recess-protrusion profile having protrusions and recesses formed between the protrusions on a surface of the workpiece; and second blasting employing an elastic abrasive having a structure in which abrasive grains carried in and/or on an elastic body made from material with low rebound elasticity for polishing the surface of the workpiece formed with the recess-protrusion profile so as to achieve an arithmetic average roughness Ra of not greater than 1.6 ?m on the surface of the protrusions and the recesses on the workpiece while maintaining the recess-protrusion profile formed by the first blasting.
    Type: Grant
    Filed: January 22, 2019
    Date of Patent: July 19, 2022
    Assignee: FUJI MANUFACTURING CO., LTD.
    Inventors: Keiji Mase, Shozo Ishibashi, Mizuki Sekizawa
  • Publication number: 20210260723
    Abstract: A re-circulatory blasting device obtained is capable of performing stable treatment for a prolonged period of time even in cases in which an elastic abrasive employed has abrasive grains adhered to the surface of elastic cores. An elastic abrasive regeneration device provided to the blasting device regenerates elastic abrasive employed for re-circulation. The elastic abrasive regeneration device includes a mixer and a combining unit. Recovered abrasive fed in from an abrasive recovery section is mixed in the mixer with abrasive grains fed in from an abrasive grain feeder, and the abrasive grains are adhered to the surface of the cores of the recovered abrasive. In the combining unit, the abrasive grains are pressed against and combined to the surface of the cores by passing an aggregated state of the recovered abrasive mixed by the mixer along a constricted flow path having a flow path cross-sectional area that gradually narrows.
    Type: Application
    Filed: September 30, 2020
    Publication date: August 26, 2021
    Inventors: Keiji MASE, Shozo ISHIBASHI, Masatoshi KITAGAMI
  • Patent number: 10987778
    Abstract: The present invention is directed to provide a method of forming dimples comparatively simply on a surface of hard-brittle materials such as ceramics by post-processing. In the method, substantially spherical ejection particles having a median diameter d50 of from 1 ?m to 20 ?m are ejected together with a compressed gas at an ejection pressure of from 0.01 MPa to 0.7 MPa against a dimple formation region which is a region where dimples are to be formed on a surface of an article made from a hard-brittle material or a surface of an article having a surface coated with a coating layer of a hard-brittle material, or the like so as to form dimples on the surface of the hard-brittle material by plastic deformation without occurrences of breaks or cracks.
    Type: Grant
    Filed: March 12, 2018
    Date of Patent: April 27, 2021
    Assignee: FUJI MANUFACTURING CO., LTD.
    Inventors: Keiji Mase, Shozo Ishibashi, Yusuke Kondo
  • Patent number: 10857695
    Abstract: A surface treatment method is provided that is capable of raising the slidability of a ceramic surface at low cost using a comparatively simple method. Dimples are formed on a surface of a treatment region, this being a portion of a ceramic surface where surface treatment is to be performed, by ejecting substantially spherical ejection particles having a median diameter of from 1 ?m to 20 ?m, together with compressed gas at an ejection pressure of from 0.01 MPa to 0.7 MPa, so as to achieve a value of a fastest decay autocorrelation length of not less than 10. The dimples are formed so as to have a plan view profile with a ratio between a horizontal Feret diameter and a vertical Feret diameter of from 0.7 to 1.43. Thereby a ceramic surface with improved slidability can be obtained regardless of use or non-use of a lubricant.
    Type: Grant
    Filed: June 28, 2018
    Date of Patent: December 8, 2020
    Assignee: FUJI MANUFACTURING CO., LTD.
    Inventors: Keiji Mase, Shozo Ishibashi, Yusuke Kondo
  • Publication number: 20200282516
    Abstract: A powder-contacting member that prevents adhesion of powder even when the powder coming into contact with a surface is not only in the form of a single particle but also in the form of a layer, and has high flowability, and a method for the surface treatment of a powder-contacting member. The powder-contacting member has a surface with which powder comes into contact and on which surface treatment is performed. An arithmetic average peak curvature Spc (1/mm) of the surface is 150 to 400, a peak density Spd (piece/mm2) of the surface is 10000 to 180000, a root mean square gradient Sdq of the surface is 0.05 to 0.30, and an arithmetic average height Sa (?m) of the surface is 0.02 to 3.00.
    Type: Application
    Filed: December 20, 2019
    Publication date: September 10, 2020
    Inventors: Keiji Mase, Shozo Ishibashi, Yusuke Kondo
  • Publication number: 20200282515
    Abstract: A method for surface treatment of a DLC coated member that includes: taking as a treatment subject a DLC coated member having a DLC film coated on a base material surface; ejecting substantially spherical ejection particles having a median diameter of from 1 ?m to 20 ?m and a falling time through air of not less than 10 s/m against a surface of the film of the member at an ejection pressure of from 0.01 MPa to 0.7 MPa; and forming dimples on the surface of the film without exposing the base material so that a total projected area of the dimples is 50% or more of a treated region and so that the surface of the DLC film is processed to an arithmetic mean height (Sa) of from 0.01 ?m to 0.1 ?m and a texture aspect ratio (Str) of 0.4 or more.
    Type: Application
    Filed: September 4, 2019
    Publication date: September 10, 2020
    Inventors: Keiji MASE, Shozo Ishibashi, Yusuke Kondo
  • Patent number: 10765498
    Abstract: An artificial tooth 30 to be polished is fixed at a tooth neck 32 side and rotated about a tooth axis 33. Abrasives, preferably elastic abrasives formed by kneading abrasive grains into or supporting abrasive grains on an elastic material, are ejected together with a compressed gas at an ejection pressure of from 0.1 MPa to 0.5 MPa onto an occlusal portion 31 side of the artificial tooth 30 while the artificial tooth 30 is being rotated. The abrasives are ejected at an inclination angle ? with respect to the tooth axis 33 of the artificial tooth 30 of from 0° to 90°, and preferably from 15° to 75°. Portions on the occlusal portion 31 and side surfaces 38 of the artificial tooth 30 are thereby polished at the same time by the abrasive sliding over these portions.
    Type: Grant
    Filed: March 20, 2018
    Date of Patent: September 8, 2020
    Assignee: FUJI MANUFACUTURING CO., LTD.
    Inventors: Keiji Mase, Shozo Ishibashi, Takahiro Shima
  • Patent number: 10758968
    Abstract: A method of treating a surface of a mold. The method includes forming dimples on a surface of a mold by ejecting substantially spherical ejection-particles so as to bombard the surface of the mold. The dimples are formed so as to satisfy a condition defined by the following formula: 1+3.3e?H/230?W?3+13.4e?H/1060 wherein W is an equivalent diameter (?m) of the dimples and H is a base metal hardness (Hv) of the mold.
    Type: Grant
    Filed: August 11, 2015
    Date of Patent: September 1, 2020
    Assignee: FUJI MANUFACTURING CO., LTD.
    Inventors: Keiji Mase, Shozo Ishibashi, Yusuke Kondo
  • Publication number: 20190283212
    Abstract: A method for surface treatment of a workpiece made from a hard-brittle material comprises first blasting employing abrasive grains of higher hardness than a hardness of a base material of the workpiece for forming a three dimensional recess-protrusion profile having protrusions and recesses formed between the protrusions on a surface of the workpiece; and second blasting employing an elastic abrasive having a structure in which abrasive grains carried in and/or on an elastic body made from material with low rebound elasticity for polishing the surface of the workpiece formed with the recess-protrusion profile so as to achieve an arithmetic average roughness Ra of not greater than 1.6 ?m on the surface of the protrusions and the recesses on the workpiece while maintaining the recess-protrusion profile formed by the first blasting.
    Type: Application
    Filed: January 22, 2019
    Publication date: September 19, 2019
    Inventors: Keiji MASE, Shozo ISHIBASHI, Mizuki SEKIZAWA
  • Publication number: 20190030682
    Abstract: The present invention is directed to provide a method of forming dimples comparatively simply on a surface of hard-brittle materials such as ceramics by post-processing. In the method, substantially spherical ejection particles having a median diameter d50 of from 1 ?m to 20 ?m are ejected together with a compressed gas at an ejection pressure of from 0.01 MPa to 0.7 MPa against a dimple formation region which is a region where dimples are to be formed on a surface of an article made from a hard-brittle material or a surface of an article having a surface coated with a coating layer of a hard-brittle material, or the like so as to form dimples on the surface of the hard-brittle material by plastic deformation without occurrences of breaks or cracks.
    Type: Application
    Filed: March 12, 2018
    Publication date: January 31, 2019
    Inventors: Keiji MASE, Shozo ISHIBASHI, Yusuke KONDO
  • Publication number: 20190016013
    Abstract: A surface treatment method is provided that is capable of raising the slidability of a ceramic surface at low cost using a comparatively simple method. Dimples are formed on a surface of a treatment region, this being a portion of a ceramic surface where surface treatment is to be performed, by ejecting substantially spherical ejection particles having a median diameter of from 1 ?m to 20 ?m, together with compressed gas at an ejection pressure of from 0.01 MPa to 0.7 MPa, so as to achieve a value of a fastest decay autocorrelation length of not less than 10. The dimples are formed so as to have a plan view profile with a ratio between a horizontal Feret diameter and a vertical Feret diameter of from 0.7 to 1.43. Thereby a ceramic surface with improved slidability can be obtained regardless of use or non-use of a lubricant.
    Type: Application
    Filed: June 28, 2018
    Publication date: January 17, 2019
    Inventors: Keiji Mase, Shozo Ishibashi, Yusuke Kondo
  • Publication number: 20180333238
    Abstract: An artificial tooth 30 to be polished is fixed at a tooth neck 32 side and rotated about a tooth axis 33. Abrasives, preferably elastic abrasives formed by kneading abrasive grains into or supporting abrasive grains on an elastic material, are ejected together with a compressed gas at an ejection pressure of from 0.1 MPa to 0.5 MPa onto an occlusal portion 31 side of the artificial tooth 30 while the artificial tooth 30 is being rotated. The abrasives are ejected at an inclination angle ? with respect to the tooth axis 33 of the artificial tooth 30 of from 0° to 90°, and preferably from 15° to 75°. Portions on the occlusal portion 31 and side surfaces 38 of the artificial tooth 30 are thereby polished at the same time by the abrasive sliding over these portions.
    Type: Application
    Filed: March 20, 2018
    Publication date: November 22, 2018
    Inventors: Keiji MASE, Shozo ISHIBASHI, Takahiro SHIMA
  • Patent number: 10131036
    Abstract: To obtain a circulation-type blasting device which enables stable processing for a long period of time even in a case that an elastic abrasive of which abrasive grains are attached to a surface of an elastic core are used. A circulation-type blasting device is provided with a device for recycling an elastic abrasive for recycling all or a part of elastic abrasive used in a cyclic way, and the device for recycling the elastic abrasive is provided with a mixing unit for mixing recovered abrasives recovered from an abrasive recovery unit and abrasive grains introduced from an abrasive grain supplying unit in a gas flow by introducing the abrasive grains and the recovered abrasive in the gas flow to generate a solid-gas biphase flow, and a combining unit composed of at least one bent space to which the solid-gas biphase flow is introduced.
    Type: Grant
    Filed: September 22, 2014
    Date of Patent: November 20, 2018
    Assignee: FUJI MANUFACTURING CO., LTD.
    Inventors: Keiji Mase, Shozo Ishibashi, Yuya Takahashi, Masatoshi Kitagami
  • Publication number: 20180229293
    Abstract: A method of treating a surface of a mold. The method includes forming dimples on a surface of a mold by ejecting substantially spherical ejection-particles so as to bombard the surface of the mold. The dimples are formed so as to satisfy a condition defined by the following formula: 1+3.3e?H/230?W?3+13.4e?H/1060 wherein W is an equivalent diameter (?m) of the dimples and H is a base metal hardness (Hv) of the mold.
    Type: Application
    Filed: August 11, 2015
    Publication date: August 16, 2018
    Inventors: Keiji MASE, Shozo ISHIBASHI, Yusuke KONDO
  • Publication number: 20180222089
    Abstract: A method of treating a surface of a mold for transparent resin molding. The method includes ejecting substantially spherical ejection particles against a surface of a mold employed to mold a transparent resin so as to bombard the surface. The method includes forming dimples with an equivalent diameter in a range that satisfies a condition defined by the following formula: 1+3.3e?H/230?W?1.5+8.9e?H/630 wherein W is an equivalent diameter (?m) of the dimples and H is a base metal hardness (Hv) of the mold.
    Type: Application
    Filed: August 11, 2015
    Publication date: August 9, 2018
    Inventors: Keiji MASE, Shozo ISHIBASHI, Yusuke KONDO