Patents by Inventor Yuuya MIYAHARA

Yuuya MIYAHARA 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: 11480941
    Abstract: To provide an analysis device, an analysis method, and an analysis program capable of analyzing a machining state while associating machine data output during operation of a machine tool and measured data containing the size of an actual machined part measured by a measuring machine with each other. An analysis device comprises: a collection unit that collects an aggregate of machine data output during operation of a machine tool and an aggregate of measured data containing measurement points where the size of a machined part machined by the machine tool has been measured by a measuring instrument; and a feature extraction unit that selects machine data corresponding to an arbitrary measurement point, in the aggregate of the measured data from the aggregate of the machine data, and extracts the selected machine data as a feature at the arbitrary measurement point.
    Type: Grant
    Filed: April 29, 2019
    Date of Patent: October 25, 2022
    Assignee: FANUC CORPORATION
    Inventors: Masao Kamiguchi, Noboru Kurokami, Shinichi Ogawa, Yuuya Miyahara, Yasushi Okajima
  • Patent number: 11307558
    Abstract: Provided is a defect occurrence prediction system for a machine tool that makes it possible to identify the factors causing the occurrence of defects efficiently and effectively, and predict the occurrence of the defects accurately with good precision.
    Type: Grant
    Filed: February 25, 2020
    Date of Patent: April 19, 2022
    Assignee: FANUC CORPORATION
    Inventors: Kouya Okudera, Hiroki Mukai, Yuuya Miyahara, Yasushi Okajima, Shinichi Ogawa, Noboru Kurokami
  • Patent number: 11126155
    Abstract: To provide an automatic screw inspection system allowing screw inspection of a workpiece to be conducted more efficiently. An automatic screw inspection system comprises: a robot to which a screw inspection device is attached, the screw inspection device including a holder unit attached in a removable manner and holding an inspection gauge used for inspection of a female screw hole in a workpiece as an inspection target; a gauge storage storing a plurality of the holder units for inspection of the female screw hole conforming to a plurality of standards; a table on which the workpiece is to be placed; and a controller that controls the drive of the robot.
    Type: Grant
    Filed: December 2, 2019
    Date of Patent: September 21, 2021
    Assignee: FANUC CORPORATION
    Inventor: Yuuya Miyahara
  • Patent number: 11118891
    Abstract: The present disclosure is intended to provide an automatic three-dimensional measurement-based inspection system for workpieces which enables three-dimensional measurement-based inspection to be performed more efficiently. An automatic three-dimensional measurement-based inspection system for workpieces includes: an automated warehouse having a measurement target repository for storing a workpiece to undergo measurement-based inspection performed by a three-dimensional measurement apparatus, and having a measurement-purpose repository for storing the workpiece conveyed from the measurement target repository by a stacker crane when the three-dimensional measurement apparatus is going to perform the measurement; and the three-dimensional measurement apparatus provided is a three-dimensional measurement region that is adjacent to the measurement-purpose repository.
    Type: Grant
    Filed: January 15, 2020
    Date of Patent: September 14, 2021
    Assignee: FANUC CORPORATION
    Inventors: Noboru Kurokami, Yuuya Miyahara, Yasushi Okajima
  • Publication number: 20200272125
    Abstract: Provided is a defect occurrence prediction system for a machine tool that makes it possible to identify the factors causing the occurrence of defects efficiently and effectively, and predict the occurrence of the defects accurately with good precision.
    Type: Application
    Filed: February 25, 2020
    Publication date: August 27, 2020
    Applicant: FANUC CORPORATION
    Inventors: Kouya OKUDERA, Hiroki MUKAI, Yuuya MIYAHARA, Yasushi OKAJIMA, Shinichi OGAWA, Noboru KUROKAMI
  • Publication number: 20200232777
    Abstract: The present disclosure is intended to provide an automatic three-dimensional measurement-based inspection system for workpieces which enables three-dimensional measurement-based inspection to be performed more efficiently. An automatic three-dimensional measurement-based inspection system for workpieces includes: an automated warehouse having a measurement target repository for storing a workpiece to undergo measurement-based inspection performed by a three-dimensional measurement apparatus, and having a measurement-purpose repository for storing the workpiece conveyed from the measurement target repository by a stacker crane when the three-dimensional measurement apparatus is going to perform the measurement; and the three-dimensional measurement apparatus provided is a three-dimensional measurement region that is adjacent to the measurement-purpose repository.
    Type: Application
    Filed: January 15, 2020
    Publication date: July 23, 2020
    Applicant: FANUC CORPORATION
    Inventors: Noboru KUROKAMI, Yuuya MIYAHARA, Yasushi OKAJIMA
  • Publication number: 20200174443
    Abstract: To provide an automatic screw inspection system allowing screw inspection of a workpiece to be conducted more efficiently. An automatic screw inspection system comprises: a robot to which a screw inspection device is attached, the screw inspection device including a holder unit attached in a removable manner and holding an inspection gauge used for inspection of a female screw hole in a workpiece as an inspection target; a gauge storage storing a plurality of the holder units for inspection of the female screw hole conforming to a plurality of standards; a table on which the workpiece is to be placed; and a controller that controls the drive of the robot.
    Type: Application
    Filed: December 2, 2019
    Publication date: June 4, 2020
    Applicant: FANUC CORPORATION
    Inventor: Yuuya MIYAHARA
  • Publication number: 20190369596
    Abstract: To provide an analysis device, an analysis method, and an analysis program capable of analyzing a machining state while associating machine data output during operation of a machine tool and measured data containing the size of an actual machined part measured by a measuring machine with each other. An analysis device comprises: a collection unit that collects an aggregate of machine data output during operation of a machine tool and an aggregate of measured data containing measurement points where the size of a machined part machined by the machine tool has been measured by a measuring instrument; and a feature extraction unit that selects machine data corresponding to an arbitrary measurement point, in the aggregate of the measured data from the aggregate of the machine data, and extracts the selected machine data as a feature at the arbitrary measurement point.
    Type: Application
    Filed: April 29, 2019
    Publication date: December 5, 2019
    Inventors: Masao KAMIGUCHI, Noboru KUROKAMI, Shinichi OGAWA, Yuuya MIYAHARA, Yasushi OKAJIMA
  • Publication number: 20190369594
    Abstract: To provide a diagnosis device, a diagnosis method, and a diagnosis program capable of identifying a factor for defective machining. A diagnosis device comprises: a collection unit that collects machine data output during operation of a machine tool; a feature extraction unit that classifies the machine data according to an input factor for defective machining, and extracts a feature quantity from an aggregate of the machine data according to the input factor; and a determination unit that compares a feature quantity in the machine data output during actual machining by the machine tool with the feature quantity according to the factor, and determines a factor for defective machining based on a degree of match.
    Type: Application
    Filed: April 29, 2019
    Publication date: December 5, 2019
    Inventors: Masao KAMIGUCHI, Noboru KUROKAMI, Shinichi OGAWA, Yuuya MIYAHARA, Yasushi OKAJIMA