Rchr
J-GLOBAL ID:200901049602663288   Update date: Sep. 03, 2024

Shibata Akinobu

シバタ アキノブ | Shibata Akinobu
Affiliation and department:
Research field  (2): Material fabrication and microstructure control ,  Structural and functional materials
Research theme for competitive and other funds  (15):
  • 2019 - 2023 Quantitative evaluation for hydrogen-induced reduction of cohesive energy through micromechanics analysis
  • 2020 - 2022 Quantitative understanding on brittle fracture of martensitic steel based on microscopic plastic deformation behavior
  • 2015 - 2020 Materials design based on fundamental understanding of peculiar mechanical properties of bulk nanostructure metals
  • 2015 - 2019 Mechanism of hydrogen embrittlement in martensitic steels
  • 2015 - 2017 In-situ neutron diffraction analysis on carbon partitioning behavior during dynamic ferrite transformation
Show all
Papers (238):
  • Kazuho Okada, Akinobu Shibata, Yuuji Kimura, Masatake Yamaguchi, Ken-ichi Ebihara, Nobuhiro Tsuji. Effect of carbon segregation at prior austenite grain boundary on hydrogen-related crack propagation behavior in 3Mn-0.2C martensitic steels. Acta Materialia. 2024. 280. 120288-120288
  • Ivan Gutierrez-Urrutia, Yuhei Ogawa, Akinobu Shibata. Hydrogen-enhanced microbanding in an austenitic FeMnAlC low-density steel: Effect on hydrogen embrittlement resistance. Acta Materialia. 2024. 280. 120335-120335
  • Kazuho Okada, Akinobu Shibata, Hisashi Matsumiya, Nobuhiro Tsuji. Origin of Serrated Markings on the Hydrogen Related Quasi-cleavage Fracture in Low-carbon Steel with Ferrite Microstructure. Tetsu-to-Hagane. 2024. 110. 11. 890-898
  • Sukyoung Hwang, Myeong-Heom Park, Yu Bai, Avala Lavakumar, Akinobu Shibata, Hiroki Adachi, Masugu Sato, Nobuhiro Tsuji. Mechanism of DSA effect correlating to the macroscopic PLC banding in high-Mn austenitic steel. Scripta Materialia. 2024. 249. 116183-116183
  • Yuya Tanaka, Naoki Hirakawa, Kaneaki Tsuzaki, Akinobu Shibata, Hisao Matsunaga. Advancements in fracture toughness testing of ultra-high-strength steel sheets: Unraveling the crack-closure effect and unanticipated thickness independence. Engineering Fracture Mechanics. 2024. 110322-110322
more...
MISC (33):
more...
Books (1):
  • 材料開発のための顕微鏡法と応用写真集
    日本金属学会編 2006
Lectures and oral presentations  (282):
  • Effects of hydrogen on deformed microstructure in 2Mn-0.1C ferritic steel
    (6th International Conference on Advanced Steels 2018)
  • Mechanical and microstructural analysis on hydrogen-related fracture behavior of martensitic steels
    (The 2nd International Symposium on Advanced Structural Materials - Design, Characterization and Processing 2018)
  • Deformation behavior and strengthening mechanisms in ultrafine-grained Al-2.5Mg
    (日本金属学会春期講演大会 2018)
  • Fabrication of ultrafine grained Fe-24Ni-0.3C without severe plastic deformation
    (日本金属学会春期講演大会 2018)
  • In-situ neutron diffraction study on tensile deformation behaviors of UFG Fe-24Ni-6Al-0.4C alloy containing B2 intermetallic compounds
    (日本金属学会秋期季講演大会 2018)
more...
Education (2):
  • - 2007 Kyoto University
  • - 2007 Kyoto University Graduate School, Division of Engineering Department of Materials Science and Engineering
Professional career (1):
  • Doctor of Engineering (Kyoto University)
Work history (4):
  • 2020/05 - 現在 National Institute for Materials Science Research Center for Structural Materials Group Leader
  • 2014/10 - 2020/04 Kyoto University Graduate School of Engineering Deprtment of Materical Science and Engineering Associate Professor
  • 2010/04 - 2014/09 Kyoto University Graduate School of Engineering Deprtment of Materical Science and Engineering Assistant Professor
  • 2007/04 - 2010/03 Tokyo Institute of Technology Precision and Intelligence Laboratory Assistant Professor
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page