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Okuyama Yelm  奥山 彫夢

ORCIDConnect your ORCID iD *help
Researcher Number 50804655
Other IDs
Affiliation (Current) 2025: 木更津工業高等専門学校, 電子制御工学科, 准教授
Affiliation (based on the past Project Information) *help 2022 – 2025: 木更津工業高等専門学校, 電子制御工学科, 准教授
2019 – 2021: 木更津工業高等専門学校, 電子制御工学科, 助教
2020: 九州大学, 工学研究院, 学術研究員
2018: 九州大学, 工学研究院, 学術研究員
Review Section/Research Field
Principal Investigator
Basic Section 18010:Mechanics of materials and materials-related
Except Principal Investigator
Basic Section 26040:Structural materials and functional materials-related / Medium-sized Section 26:Materials engineering and related fields
Keywords
Except Principal Investigator
電子チャネリングコントラスト / 水素脆化 / 塑性変形 / 残留オーステナイト / TRIP効果 / 複相鋼 / コア-シェル組織 / 元素分配 / マルテンサイト / 組織制御 … More / 高強度 / 結晶粒微細化 / 鉄合金 / 固溶強化 / 転位運動 / 元素移流拡散解析 / 結晶塑性有限要素法 / その場観察 / き裂 / そのば観察 / 金属疲労 / 力学試験 / 曲げ試験 / 結晶塑性 / 亀裂 / 力学特性 / 強度 / 変形 / すべり変形 / 転位 / マテリアルインフォマティックス / 力学的応答 / 局所ひずみ分布 / 構造用金属材料 / 相当塑性ひずみ / 結晶性材料 / 変形微視組織 / 集合組織 / 力学物性 / 転位論 Less
  • Research Projects

    (6 results)
  • Research Products

    (10 results)
  • Co-Researchers

    (8 People)
  •  微視組織の局所情報を用いた結晶塑性解析による分散強化法の新たな加工硬化理論の構築Principal Investigator

    • Principal Investigator
      奥山 彫夢
    • Project Period (FY)
      2025 – 2027
    • Research Category
      Grant-in-Aid for Scientific Research (C)
    • Review Section
      Basic Section 18010:Mechanics of materials and materials-related
    • Research Institution
      Kisarazu National College of Technology
  •  水素由来の『硬化』に起因する脆化メカニズムの解明

    • Principal Investigator
      小山 元道
    • Project Period (FY)
      2024 – 2026
    • Research Category
      Grant-in-Aid for Scientific Research (B)
    • Review Section
      Basic Section 26040:Structural materials and functional materials-related
    • Research Institution
      Tohoku University
  •  Microstructure Control and Property Enhancement Mechanism of Core-Shell Structure Reinforced Alloys with Combined Strength and Workability

    • Principal Investigator
      土山 聡宏
    • Project Period (FY)
      2023 – 2025
    • Research Category
      Grant-in-Aid for Scientific Research (A)
    • Review Section
      Medium-sized Section 26:Materials engineering and related fields
    • Research Institution
      Kyushu University
  •  Development of In situ characterization methods for dislocation motion at a crack tip: overcoming metal fatigue

    • Principal Investigator
      Koyama Motomichi
    • Project Period (FY)
      2020 – 2022
    • Research Category
      Grant-in-Aid for Scientific Research (B)
    • Review Section
      Basic Section 26040:Structural materials and functional materials-related
    • Research Institution
      Tohoku University
  •  Temperature dependence of critical resolved shear stress using without making large single crystalline specimens

    • Principal Investigator
      Tanaka Masaki
    • Project Period (FY)
      2019 – 2021
    • Research Category
      Grant-in-Aid for Scientific Research (B)
    • Review Section
      Basic Section 26040:Structural materials and functional materials-related
    • Research Institution
      Kyushu University
  •  Establishment of Numerical Method of Local Plastic Strain by Nanoscale Marking

    • Principal Investigator
      Morikawa Tatsuya
    • Project Period (FY)
      2018 – 2020
    • Research Category
      Grant-in-Aid for Scientific Research (C)
    • Review Section
      Basic Section 26040:Structural materials and functional materials-related
    • Research Institution
      Kyushu University

All 2024 2023 2022 2020 2019

All Journal Article Presentation

  • [Journal Article] Temperature Independences of Fatigue Crack Growth in Ti–0.49 mass%O2022

    • Author(s)
      Y. Okuyama, M. Tanaka and T. Morikawa
    • Journal Title

      MATERIALS TRANSACTIONS

      Volume: 63 Issue: 4 Pages: 600-606

    • DOI

      10.2320/matertrans.MT-M2021211

    • ISSN
      1345-9678, 1347-5320
    • Year and Date
      2022-04-01
    • Language
      English
    • Peer Reviewed / Open Access
    • Data Source
      KAKENHI-PROJECT-19H02462, KAKENHI-PLANNED-18H05451
  • [Journal Article] Modelling and Crystal Plasticity Analysis for the Mechanical Response of Alloys with Non-uniformly Distributed Secondary Particles2020

    • Author(s)
      Okuyama Yelm、Tanaka Masaki、Ohashi Tetsuya、Morikawa Tatsuya
    • Journal Title

      ISIJ International

      Volume: 60 Issue: 8 Pages: 1819-1828

    • DOI

      10.2355/isijinternational.ISIJINT-2019-754

    • NAID

      130007888020

    • ISSN
      0915-1559, 1347-5460
    • Year and Date
      2020-08-15
    • Language
      English
    • Peer Reviewed / Open Access
    • Data Source
      KAKENHI-PROJECT-18K04751, KAKENHI-PLANNED-18H05451
  • [Journal Article] Activated slip systems in bimodal Ti-6Al-4V plastically deformed at low and moderately high temperatures2020

    • Author(s)
      Anne Bhargavi Rani、Okuyama Yelm、Morikawa Tatsuya、Tanaka Masaki
    • Journal Title

      Materials Science and Engineering: A

      Volume: 798 Pages: 140211-140211

    • DOI

      10.1016/j.msea.2020.140211

    • Peer Reviewed
    • Data Source
      KAKENHI-PLANNED-18H05451, KAKENHI-PROJECT-19H02462
  • [Journal Article] Modelling and Crystal Plasticity Analysis for the Mechanical Response of Alloys with Non-uniformly Distributed Secondary Particles2019

    • Author(s)
      奥山彫夢,田中將己,大橋鉄也,森川龍哉
    • Journal Title

      Tetsu-to-Hagane

      Volume: 105 Issue: 2 Pages: 163-172

    • DOI

      10.2355/tetsutohagane.TETSU-2018-098

    • NAID

      130007585436

    • ISSN
      0021-1575, 1883-2954
    • Language
      Japanese
    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-17H01333, KAKENHI-PROJECT-18H03848, KAKENHI-PROJECT-18K04751, KAKENHI-PLANNED-18H05451
  • [Journal Article] Change in Slip Mode with Temperature in Ti–0.49 mass%O2019

    • Author(s)
      Masaki Tanaka, Yukihiro Hayashi, Yelm Okuyama, Tatsuya Morikawa and Kenji Higashida
    • Journal Title

      MATERIALS TRANSACTIONS

      Volume: 60 Issue: 1 Pages: 80-85

    • DOI

      10.2320/matertrans.M2018251

    • NAID

      130007550001

    • ISSN
      1345-9678, 1347-5320
    • Year and Date
      2019-12-01
    • Language
      English
    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-18K04751, KAKENHI-PLANNED-18H05451
  • [Presentation] コアシェル構造組織の粒子形状と力学特性の結晶塑性解析2024

    • Author(s)
      柴田歩武 奥山彫夢 土山聡宏
    • Organizer
      日本鉄鋼協会第187回春季講演大会
    • Data Source
      KAKENHI-PROJECT-23H00237
  • [Presentation] コアシェル構造組織の不均一変形結晶塑性解析による特性評価2023

    • Author(s)
      柴田歩武 奥山彫夢 土山聡宏
    • Organizer
      日本金属学会関東支部 第20回ヤングメタラジスト研究交流会
    • Data Source
      KAKENHI-PROJECT-23H00237
  • [Presentation] 結晶塑性有限要素解析を用いたSi単結晶の加工硬化挙動解析2020

    • Author(s)
      鈴木飛翔,奥山彫夢,森川龍哉,田中將己,藤瀬淳,小野敏昭
    • Organizer
      日本金属学会
    • Data Source
      KAKENHI-PROJECT-18K04751
  • [Presentation] マイクロカンチレバーを用いたFe-Si合金の塑性変形挙動解析2020

    • Author(s)
      池上健太,田中將己,森川龍哉,奥山彫夢
    • Organizer
      日本鉄鋼協会
    • Data Source
      KAKENHI-PROJECT-18K04751
  • [Presentation] Temperature dependence of activated slip systems in ti-6al-4v2019

    • Author(s)
      B.R. Anne, Y. Okuyama, T. Morikawa and M. Tanaka
    • Organizer
      日本金属学会2019年秋季(第165回)講演大会
    • Data Source
      KAKENHI-PROJECT-19H02462
  • 1.  Morikawa Tatsuya (00274506)
    # of Collaborated Projects: 2 results
    # of Collaborated Products: 3 results
  • 2.  Tanaka Masaki (40452809)
    # of Collaborated Projects: 2 results
    # of Collaborated Products: 4 results
  • 3.  Koyama Motomichi (20722705)
    # of Collaborated Projects: 2 results
    # of Collaborated Products: 0 results
  • 4.  佐々木 大輔 (50772498)
    # of Collaborated Projects: 2 results
    # of Collaborated Products: 0 results
  • 5.  武富 紳也 (20608096)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results
  • 6.  土山 聡宏 (40315106)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 2 results
  • 7.  増村 拓朗 (40804688)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results
  • 8.  諸岡 聡 (10534422)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results

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