Rchr
J-GLOBAL ID:200901047297906687   Update date: Nov. 21, 2024

Soyama Hitoshi

ソヤマ ヒトシ | Soyama Hitoshi
Affiliation and department:
Job title: Professor
Homepage URL  (2): http://web.tohoku.ac.jp/ism/http://web.tohoku.ac.jp/ism/En/index.html
Research field  (3): Fluid engineering ,  Manufacturing and production engineering ,  Machine materials and mechanics
Research keywords  (3): Cavitation ,  Surface Mechanics ,  Surface modification
Research theme for competitive and other funds  (40):
  • 2012 - 現在 Surface Mechanics Design
  • 2002 - 現在 Study on Residual Stress
  • 1991 - 現在 Cavitation Erosion
  • 1991 - 現在 Surface modification by Using Cavitating Jet
  • 2023 - 2026 固気液混相を用いたエネルギーの時間的・空間的凝縮と3D-Metalの疲労強度向上への展開
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Papers (322):
  • Jayanath C. P. Koliyadu, Daniel Moško, Eleni Myrto Asimakopoulou, Valerio Bellucci, Šarlota Birnšteinová, Richard Bean, Romain Letrun, Chan Kim, Henry Kirkwood, Gabriele Giovanetti, et al. Development of MHz X-ray phase contrast imaging at the European XFEL. Journal of Synchrotron Radiation. 2025. 32. 1
  • Hitoshi Soyama, Kwan Lok Wong, Daniel Eakins, Alexander M. Korsunsky. The effects of submerged laser peening, cavitation peening, and shot peening on the improvement of the torsional fatigue strength of powder bed fused Ti6Al4V produced through laser sintering. International Journal of Fatigue. 2024. 185. 108348-108348
  • Krzysztof Siemek, Hitoshi Soyama, Mirosław Wróbel, Maciej Oskar Liedke, Maik Butterling, Andreas Wagner, Mariusz Kulczyk, Paweł Horodek. Defect dynamics studies during heat treatments in plastically deformed metals predicted for nuclear applications. Journal of Materials Research. 2024
  • Takashi SATO, Yuki KUROMASA, Koichi HATAKEYAMA, Hitoshi SOYAMA. Differences in Cavitation Erosion Test Methods for Development of Anti-Cavitation Cylinder Liner. Turbomachinery. 2024. 52. 5. 300-307
  • Hitoshi Soyama. Improvement of Fatigue Strength of 3D-Metal by Combined Process of Blasting and Cavitation Peening. Lecture Notes in Mechanical Engineering. 2024. 23-29
more...
MISC (257):
  • Hitoshi Soyama. Laser Cavitation Peening for Improvement of Fatigue Properties of Metallic Materials. Metal Finishing News. 2024. 25. 5. 56-59
  • Hitoshi Soyama. Fundamentals and Applications of Cavitation Peening. JSSE Magazine. 2024. 633. 3-6
  • 祖山均. 連載 ショットピーニングの原理・応用・未来〔6〕ショットレスピーニング2-キャビテーションピーニング-. 機械と工具. 2024. 14. 7. 68-74
  • Hitoshi Soyama, Chieko Kuji. Development of Torsion Fatigue Tester to Evaluate Surface Modification Layer of 3D-Metal. Metal Finishing News. 2023. 24. 5. 52-55
  • 祖山 均, 久慈 千栄子. 東北大学大学院工学研究科ファインメカニクス専攻 材料メカニクス講座 知的計測評価学分野-Department of Finemechanics, Graduate School of Engineering, Tohoku University Intelligent Sensing of Materials, Materials Physics and Engineering. ターボ機械 = Turbomachinery. 2022. 50. 12. 756-762
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Patents (30):
  • 金属短線の洗浄装置および金属短線の洗浄方法
  • 平面曲げ疲労試験機
  • キャビテーション発生装置
  • 水噴流によるピーニング方法及び装置
  • 応力保持装置およびX線回折装置
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Books (10):
  • 金属疲労とショットピーニング 改訂第4版
    大河出版 2018
  • Measurement and Instrumentation
    朝倉書店 2017 ISBN:9784254201659
  • バイオマス由来の高機能材料
    エヌ・ティー・エス 2016
  • 新版キャビテ-ション -基礎と最近の進歩-
    森北出版 2016 ISBN:9784627602397
  • 水素利用技術集成 Vol. 4
    株式会社エヌ・ティー・エス 2014 ISBN:9784864690829
more...
Lectures and oral presentations  (62):
  • X-ray high-speed imaging of hydrodynamic cavitation and biomass particle passing through Venturi tube
    (Fluid dynamics meets synchrotron X-ray high-speed imaging)
  • Mechanical Surface Treatment of Additive Manufactured Ti6Al4V by Cavitation Peening
    (2020 Spring International Conf. on Material Sciences and Technology (MST-S) 2020)
  • Fundamentals and applications of cavitation peening comparing with shot peening and laser peening
    (International Conference on Advanced Surface Enhancement 2019 2019)
  • Improvement of Fatigue Strength of Light Metals by Mechanical Surface Treatment
    (International Conference on Light Alloys and Metal Materials (LAMM 2019) 2019)
  • Observation of Cavitation around a Submerged Fan Jet
    (The 12th Pacific Rim International Conference on Water Jet Technology 2019)
more...
Works (1):
  • Evaluation of cavitation impact energy
    2000 -
Education (2):
  • - 1991 Tohoku University Graduate School, Division of Engineering 機械工学
  • - 1986 Tohoku University Faculty of Engineering 機械工学科
Professional career (1):
  • 工学博士 (Tohoku University)
Work history (4):
  • 2003/04 - 現在 Tohoku University Professor
  • 1997/04 - 2003/03 東北大学 助教授(工学研究科) 大学院重点化による配置換
  • 1995/10 - 1997/03 東北大学 助教授(工学部)
  • 1991/04 - 1995/09 東北大学 助手(流体科学研究所)
Committee career (20):
  • 2014/01 - 現在 SAE International, Surface Enhancement Committee SEC Member
  • 2013/08 - 現在 SAE International, Aerospace Metals Engineering Committee, Surface Enhancement Subcommittee AMEC-SE Member
  • 2010/08 - 現在 ASTM Intenational, G02.10 Sub-committee, Task group of ASTM G134 ILS Chairman
  • 2007/06 - 現在 ショットピーニング技術協会 理事
  • 2021/08 - 2022/08 日本混相流学会 会長
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Awards (24):
  • 2024/04 - The Commendation for Science and Technology by the Minister of Education, Culture, Sports, Science and Technology Awards for Science and Technology (Research Category) Surface mechanics design of materials by using liquid-gas phase change phenomenon
  • 2019/06 - 公益社団法人自動車技術会 フェロー
  • 2017/05/27 - 日本材料学会 日本材料学会支部功労賞 機械的表面改質による表面力学設計に関する研究ならびに日本材料学会東北支部に関する貢献
  • 2017/05/25 - 自動車技術会 自動車技術会功労者
  • 2016/01/26 - American Society of Mechanical Engineers ASME Fellow
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Association Membership(s) (11):
Society of Automotive Engineers of Japan, Inc ,  The Japan Society of Multiphase Flow ,  ショットピーニング技術協会 ,  ターボ機械協会 ,  日本材料学会 ,  日本ウォータージェット学会 ,  日本機械学会 ,  SAE International ,  日本工学アカデミー ,  ASTM International ,  American Society of Mechanical Engineers
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