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J-GLOBAL ID:200901082847137708   Update date: Mar. 07, 2024

Kimizuka Hajime

キミヅカ ハジメ | Kimizuka Hajime
Affiliation and department:
Job title: 教授
Research field  (3): Computational science ,  Metallic materials ,  Machine materials and mechanics
Research keywords  (3): Solid Mechanics ,  Computational Mechanics ,  Computational Materials Science
Research theme for competitive and other funds  (16):
  • 2021 - 2024 First-principles design of hydrogen energy materials from quantum modeling of electrons and nuclei
  • 2018 - 2023 Modeling-based investigation of mechanism of kink deformation and strengthening
  • 2018 - 2023 Materials science of millefeuille structure (Management group)
  • 2018 - 2021 Exploration and application of quantum modeling for next-generation design of hydrogen energy materials
  • 2013 - 2016 Predictive atomistic and electronic modeling of stress corrosion phenomena of materials
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Papers (83):
  • Motoyuki Shiga, Bo Thomsen, Hajime Kimizuka. Inelastic neutron scattering of hydrogen in palladium studied by semiclassical dynamics. Physical Review B. 2024. 109. 5
  • Hiroshi Okuda, Kohei Kintsu, Shu Kurokawa, Masao Tabuchi, Hiroaki Nitani, Hajime Kimizuka, Shin-ichi Inoue, Michiaki Yamasaki, Yoshihito Kawamura. Nanoclusters in stacking faults in Mg-Y-Zn alloys examined by small-angle X-ray scattering and extended X-ray absorption fine structure analysis. Acta Materialia. 2023. 253. 118963-118963
  • Rana Hossain, Hajime Kimizuka, Shigenobu Ogata. Asymmetry in core structure and mobility of basal dislocations in a Ti3SiC2 MAX phase: An atomistic study with machine-learned force fields. Physical Review Materials. 2023. 7. 5
  • Hyukjoon Kwon, Motoyuki Shiga, Hajime Kimizuka, Takuji Oda. Accurate description of hydrogen diffusivity in bcc metals using machine-learning moment tensor potentials and path-integral methods. Acta Materialia. 2023. 247
  • Heting Liao, Hajime Kimizuka, Hiroshi Miyoshi, Shigenobu Ogata. Origin of the nucleation preference of coherent and semicoherent nanoprecipitates in Al-Cu alloys based on atomistically informed classical nucleation theory. Journal of Alloys and Compounds. 2023. 938. 168559-168559
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MISC (84):
Works (3):
  • 粒子描像による固体の熱伝導機構の解明
    2009 -
  • 負の剛性相を含有する次世代ナノコンポジットの変形モデリング
    2009 -
  • 次世代高強度鋼の変形のマルチスケールモデリング
    2008 -
Education (2):
  • 2004 - 2006 Osaka University Graduate School of Engineering Department of Mechanical System Engineering
  • 1995 - 1997 Waseda University Graduate School of Science and Engineering Department of Mineral Resources Engineering and Materials Science and Engineering
Professional career (1):
  • Ph. D. (Osaka University)
Awards (13):
  • 2020/03 - Institute of Physics (IOP) IOP Outstanding Reviewer Awards 2019
  • 2018/04 - Kansai Branch of the Society of Materials Science, Japan JSMS Kansai Branch President Award
  • 2017/09 - The Japan Society for Computational Engineering and Science Best Paper Award in the 22th Conference on Computational Engineering and Science
  • 2016/04 - Computational Mechanics Division, The Japan Society of Mechanical Engineers Certificate of Merit for Best Presentation
  • 2012/05 - The Society of Materials Science, Japan JSMS Award for Promising Researchers
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Association Membership(s) (8):
The Japan Institute of Light Metals ,  The Iron and Steel Institute of Japan ,  日本金属学会 ,  日本計算工学会 ,  日本物理学会 ,  日本材料学会 ,  Materials Research Society (MRS) ,  The Japan Society of Mechanical Engineers
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