Rchr
J-GLOBAL ID:201901005110954848   Update date: Nov. 05, 2024

Ozeki Go

Ozeki Go
Affiliation and department:
Research field  (2): Structural and functional materials ,  Machine materials and mechanics
Research keywords  (3): 材料強度学 ,  水素脆化 ,  高温強度
Research theme for competitive and other funds  (2):
  • 2021 - 2024 Analysis of the mechanism of mechanical stress-induced osteogenesis using method of numerical analysis on local mechano-electric induced particle diffusion and its application for osteosynthesis
  • 2020 - 2023 Establishing a creep life prediction methodology for heat-resistant structures at high temperatures
Papers (36):
  • A.Toshimitsu Yokobori,Jr, Toshihito Ohmi, Go Ozeki, Ikuo Shoji, Tsutomu Katsumata, Toru Matsubara. Deteriorated Characteristics on the Fatigue Strength of Dissimilar A6061/Galvannealed Steel Joints Fabricated by Friction Stir Spot Welding. Journal of The Japanese Society for Strength and Fracture of Materials. 2024. 58. 1-2. 8-14
  • A.Toshimitsu Yokobori, Jr, Go Ozeki. Fatigue Crack Growth Behaviors of Coplanar and Non-coplanar Precracks. Journal of The Japanese Society for Strength and Fracture of Materials. 2024. 58. 1-2. 1-7
  • Go Ozeki, A.Toshimitsu Yokobori,Jr., Toshihito Ohmi, Jun Horikawa, Shohei Watanabe. Effect of Gauge Length on Stress Response under Strain-Controlled Loading Condition for a Notched Specimen. Journal of The Japanese Society for Strength and Fracture of Materials. 2024. 57. 3-4. 36-40
  • Go Ozeki, Toshimitsu Yokobori, Daisuke Kobayashi. Effect of cyclic overload on deformation, crack growth behavior and crack initiation/growth lives of a C(T) specimen for 12Cr steel under creep-fatigue condition. Materials at High Temperatures. 2024. 41. 2. 265-273
  • A.Toshimitu Yokobori, Jr, Toshihito Ohmi, Go Ozeki, Daisuke Kobayashi. The Quantitative Estimation of Hydrogen Embrittlement Sensitivity based on the Analysis of Local Stress Induced Hydrogen Difusion. Journal of The Japanese Society for Strength and Fracture of Materials. 2023. 57. 1-2. 6-12
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MISC (6):
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Lectures and oral presentations  (19):
  • 環状切欠き試験片を用いたひずみ制御クリープ疲労き裂成長試験および寿命評価方法
    (日本材料学会 第73期第1回高温強度部門委員会 2024)
  • Measurement Method of Cycle Sequential Characteristics of Stress Reduction under Strain-Controlled Creep-Fatigue Conditions using Circular Sharp Notched Round Bar Specimen
    (2023)
  • Effect of Overload on Deformation, Crack Growth Behavior and Crack Initiation/Growth Lives of a C(T) Specimen for 12Cr Steel under Creep-Fatigue Conditions
    (ECCC2023 6th International Creep&Fracture Conference 2023)
  • Alloy617の環状切欠き試験片を用いた変位制御クリープ疲労き裂成長試験および寿命評価方法
    (日本学術振興会 先端材料強度 第129委員会 第127回本委員会 2022)
  • Clarification of Creep Damage Formation Behavior and Quantitative Estimation of Mechanical Performance of Weld Joint Notched Specimen for 2.25Cr-Mo Steel
    (Materials Research Meeting 2021 2021)
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Education (3):
  • 2012 - 2016 Tohoku University
  • 2009 - 2011 Tohoku University
  • 2005 - 2009 Akita Prefectural University Faculty of Systems Science and Technology
Professional career (1):
  • Dr. of Engineering (Tohoku University)
Work history (5):
  • 2021/04 - 現在 Teikyo University
  • 2020/04 - 2021/03 Teikyo University Stragetic Innovation Reseach Center Senior Assistant Professor
  • 2017/04 - 2020/03 Teikyo University
  • 2016/04 - 2017/03 Teikyo University
  • 2011/04 - 2012/03 株式会社 日立製作所
Committee career (4):
  • 2024/10 - 現在 日本材料学会,高温強度部門委員会 幹事
  • 2024/06 - 現在 日本材料強度学会 評議員
  • 2021/11 - 現在 Strength, Fracture and Complexity. Editorial board
  • 2016/06 - 2024/03 日本学術振興会 先端材料強度第129委員会 委員
Awards (3):
  • 2018/03 - International Association of Advanced Materials IAAM Young Scientist Medal for the year 2018
  • 2016/08 - Asia Pacific Society for Materials Research Outstanding achievement and contribution to ISAMR2016 Invited Presentation
  • 2011/11 - 日本金属学会 2011年秋期大会 第17回 優秀ポスター賞 Ni基超合金のクリープき裂発生寿命
Association Membership(s) (5):
THE SOCIETY OF MATERIALS SCIENCE, JAPAN ,  THE IRON AND STEEL INSTITUTE OF JAPAN ,  THE JAPAN INSTITUTE OF METALS AND MATERIALS ,  THE JAPANESE SOCIETY FOR STRENGTH AND FRACTURE OF MATERIALS ,  THE JAPAN SOCIETY OF MECHANICAL ENGINEERS
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