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J-GLOBAL ID:200901040452535599   Update date: Oct. 17, 2024

Shibanuma Kazuki

シバヌマ カズキ | Shibanuma Kazuki
Affiliation and department:
Job title: 准教授
Homepage URL  (1): http://www.struct.t.u-tokyo.ac.jp/shibanuma/
Research field  (4): Machine materials and mechanics ,  Marine and maritime engineering ,  Structural and functional materials ,  Structural and seismic engineering
Research keywords  (2): Structural integrity ,  Fracture Mechanics
Research theme for competitive and other funds  (23):
  • 2024 - 2027 Elucidation of transformation-induced plasticity mechanism of polyrotaxane glass through multiscale structure-properties analysis
  • 2022 - 2027 Design strategy for brittle crack arrest to achieve innovative crack propagation control
  • 2020 - 2023 Enhancing brittle crack arrest ability of ultra-thick steel structures by mechanism investigations
  • 2020 - 2023 Establishing a creep life prediction methodology for heat-resistant structures at high temperatures
  • 2018 - 2022 大規模構造体の脆性亀裂停止性能評価の一般化:破壊力学モデルと合理的試験体系の確立
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Papers (94):
  • Hongchang Zhou, Masao Kinefuchi, Yasuhito Takashima, Kazuki Shibanuma. Multiscale modelling strategy for predicting fatigue performance of welded joints. International Journal of Mechanical Sciences. 2024. 109751-109751
  • Tianyu He, Kota Kishi, Naoki Morita, Naoto Mitsume, Fuminori Yanagimoto, Yun-Jae Kim, Kazuki Shibanuma. Strategy for simulating high-speed crack propagation in 3D-plate structures based on S-version FEM. International Journal of Mechanical Sciences. 2024. 274. 109261-109261
  • Shengwen Tu, Naoki Morita, Tsutomu Fukui, Kazuki Shibanuma. The s-version finite element method for non-linear material problems. Applied Mathematical Modelling. 2024. 126. 287-309
  • Hongchang Zhou, Yuta Suzuki, Masao Kinefuchi, Siegfried Schmauder, Kiarash Dogahe, Kazuki Shibanuma. Bridging strategy between microscopic and macroscopic crack growth simulations to predict fatigue strength of steels. International Journal of Fatigue. 2023. 168. 107386-107386
  • Hongchang Zhou, Zijie Liu, Shoichi Kikuchi, Kazuki Shibanuma. Analysis of fatigue performance of austenitic stainless steels with bimodal harmonic structures based on multiscale model simulations. Materials & Design. 2023. 226. 111657-111657
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Education (3):
  • 2007 - 2010 Kyoto University, Graduate School of Engineering, Department of Civil and Earth Resources Engineering (Doctor's Course)
  • 2006 - 2007 Kyoto University, Graduate School of Engineering, Department of Civil and Earth Resources Engineering (Master's Course)
  • 2002 - 2006 Kyoto University, Faculty of Engineering, Undergraduate School of Global Engineering
Professional career (1):
  • Doctor of Engineering
Work history (7):
  • 2021/10 - 現在 Japan Science and Technology Agency PRESTO researcher
  • 2017/01 - 現在 The University of Tokyo Department of Systems Innovations, School of Engineering Associate Professor
  • 2018/04 - 2021/12 Imperial College London Mechanical Engineering Visiting Academic
  • 2013/06 - 2016/12 The University of Tokyo Department of Systems Innovations, School of Engineering Lecturer
  • 2010/11 - 2013/05 The University of Tokyo Department of Systems Innovations, School of Engineering Assistant Professor
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Awards (16):
  • 2023/05 - Fatigue Award for Scientific Paper
  • 2022/10 - Advances In Engineering Featured Article Hybrid experimental-numerical strategy for efficiently and accurately identifying post-necking hardening and ductility diagram parameters
  • 2021/04 - Ministry of Education, Culture, Sports, Science and Technology The Young Scientists’ Award, The Commendation for Science and Technology by the Minister of Education, Culture, Sports, Science and Technology
  • 2020/06 - Japan Association for Computational Mechanics The JACM Young Investigator Award
  • 2019/03 - Advances In Engineering Featured Article
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