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Kawamura Hirofumi  川村 拓史

ORCIDConnect your ORCID iD *help
Researcher Number 80965765
Other IDs
Affiliation (Current) 2026: 長岡技術科学大学, 工学研究科, 助教
Affiliation (based on the past Project Information) *help 2022 – 2024: 長岡技術科学大学, 工学研究科, 助教
2023: 長岡技術科学大学, 技学研究院, 助教
Review Section/Research Field
Principal Investigator
Basic Section 18020:Manufacturing and production engineering-related / 0301:Mechanics of materials, production engineering, design engineering, fluid engineering, thermal engineering, mechanical dynamics, robotics, aerospace engineering, marine and maritime engineering, and related fields
Except Principal Investigator
Basic Section 18020:Manufacturing and production engineering-related
Keywords
Principal Investigator
イオン交換法 / 電圧印加 / ガラス / 電析 / 銀 / 金属析出 / 銀析出物 / 銀イオン / ホウケイ酸ガラス / 固体イオン交換法 … More / 割断加工 / アルカリ金属イオン / 亀裂形成 / 亀裂 / アルカリ金属イオン欠乏層 / 割断 / 陽極接合 / 金 … More
Except Principal Investigator
自由曲面 / 機能性表面 / 超音波スピンドル / 複合超音波振動 / テクスチャ形状制御 / 3次元曲面 / 規則テクスチャ加工 / 超音波ミーリング / 超音波切削 Less
  • Research Projects

    (3 results)
  • Research Products

    (12 results)
  • Co-Researchers

    (5 People)
  •  Development of functional surface creation technology on curved surfaces using a three-dimensional composite vibration ultrasonic spindle

    • Principal Investigator
      原 圭祐
    • Project Period (FY)
      2024 – 2027
    • Research Category
      Grant-in-Aid for Scientific Research (B)
    • Review Section
      Basic Section 18020:Manufacturing and production engineering-related
    • Research Institution
      Ichinoseki National College of Technology
  •  微視的観察によるガラス内金属析出現象の解明および工学応用への展開Principal Investigator

    • Principal Investigator
      川村 拓史
    • Project Period (FY)
      2023 – 2025
    • Research Category
      Grant-in-Aid for Early-Career Scientists
    • Review Section
      Basic Section 18020:Manufacturing and production engineering-related
    • Research Institution
      Nagaoka University of Technology
  •  Elucidation of crack formation and gold transfer phenomena induced by applying voltage to gold/glass and application to glass processingPrincipal Investigator

    • Principal Investigator
      Kawamura Hirofumi
    • Project Period (FY)
      2022 – 2023
    • Research Category
      Grant-in-Aid for Research Activity Start-up
    • Review Section
      0301:Mechanics of materials, production engineering, design engineering, fluid engineering, thermal engineering, mechanical dynamics, robotics, aerospace engineering, marine and maritime engineering, and related fields
    • Research Institution
      Nagaoka University of Technology

All 2025 2024 2023

All Journal Article Presentation

  • [Journal Article] Formation of Metal Precipitates in Glass by Electric Field-Assisted Solid-State Ion-Exchange and Its Applications2025

    • Author(s)
      川村 拓史、松坂 壮太
    • Journal Title

      Journal of the Society of Inorganic Materials, Japan

      Volume: 32 Issue: 434 Pages: 19-25

    • DOI

      10.11451/mukimate.25.01.04

    • ISSN
      1345-3769, 2185-4378
    • Year and Date
      2025-01-01
    • Language
      Japanese
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] 温度場を用いたガラス内銀析出物の形状制御2025

    • Author(s)
      宮田歩武, 河野美優香, 川村拓史, 松坂壮太, 伊東翔, 比田井洋史
    • Organizer
      2025年度精密工学会春季大会学術講演会
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] ガラス内銀析出挙動の動的観察および温度依存性に関する考察2025

    • Author(s)
      川村拓史, 目黑広大, 松坂壮太, 原圭祐, 磯部浩已
    • Organizer
      2025年度精密工学会春季大会学術講演会
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] Observation of growth behavior of silver precipitates in glass2024

    • Author(s)
      Hirofumi Kawamura, K. Meguro, S. Matsusaka, K. Hara, H. Isobe
    • Organizer
      The 20th International Conference on Precision Engineering
    • Int'l Joint Research
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] 金属/ガラスへの電圧印加によるガラス内金属析出現象および金流入現象の解明2024

    • Author(s)
      川村拓史,松坂壮太,原圭祐,磯部浩已
    • Organizer
      電気学会 電子材料研究会 「次世代デバイス応用へ向けたエコシステム材料の合成・物性評価」
    • Invited
    • Data Source
      KAKENHI-PROJECT-22K20420
  • [Presentation] 固体イオン交換法を利用したガラス内金属析出現象に関する研究2024

    • Author(s)
      川村 拓史
    • Organizer
      2024年度精密工学会北陸信越支部学術講演会
    • Invited
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] ガラス内銀析出現象における電流密度の影響2024

    • Author(s)
      目黑広大,川村拓史,松坂壮太,原圭祐,磯部浩已
    • Organizer
      2024年度砥粒加工学会学術講演会,ABTEC2024
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] ガラス内銀析出現象における電流密度の影響2024

    • Author(s)
      目黑 広大, 川村 拓史, 松坂 壮太, 原 圭祐, 磯部 浩已
    • Organizer
      2024年度砥粒加工学会学術講演会 ABTEC2024
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] UVレーザを用いたガラス内銀析出物成長方向の誘導2024

    • Author(s)
      宮田 歩武, 河野美 優香, 川村 拓史, 松坂 壮太, 伊東 翔, 比田井 洋史
    • Organizer
      2024年度精密工学会秋季大会学術講演会
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] Observation of growth behavior of silver precipitates in glass2024

    • Author(s)
      Hirofumi Kawamura, Kodai Meguro, Souta Matsusaka, Keisuke Hara, Hiromi Isobe
    • Organizer
      ICPE2024: The 20th International Conference on Precision Engineering
    • Int'l Joint Research
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] 金属析出現象を利用したガラス内金属配線技術2023

    • Author(s)
      川村拓史
    • Organizer
      実装フェスタ関西2023
    • Data Source
      KAKENHI-PROJECT-23K13231
  • [Presentation] 金属/ガラスへの電圧印加によるガラス内金属析出現象および金流入現象の解明2023

    • Author(s)
      川村拓史,松坂壮太,原圭祐,磯部浩已
    • Organizer
      電気学会,電子材料研究会,次世代デバイス応用へ向けたエコシステム材料の合成・物性評価
    • Invited
    • Data Source
      KAKENHI-PROJECT-23K13231
  • 1.  原 圭祐 (30515812)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results
  • 2.  磯部 浩已 (60272861)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results
  • 3.  田口 恭輔 (10880924)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results
  • 4.  堤 博貴 (30300544)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results
  • 5.  藤原 康宣 (40290689)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results

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