Rchr
J-GLOBAL ID:201801011998286093   Update date: Nov. 07, 2024

Masuda Hiroshi

マスダ ヒロシ | Masuda Hiroshi
Affiliation and department:
Job title: Lecturer
Homepage URL  (1): http://www.ceramic.t.u-tokyo.ac.jp
Research field  (2): Inorganic materials ,  Metallic materials
Research keywords  (10): Materials science ,  Metal ,  Ceramics ,  Crystal plasticity ,  Dislocation ,  Twin ,  Grain boundary ,  Superplasticity ,  Flash sintering ,  Electron microscopy
Research theme for competitive and other funds  (7):
  • 2023 - 2026 セラミックスにおける微視的な塑性変形能の活性化
  • 2020 - 2024 Twinning-induced toughening forward hard and tough ceramics
  • 2021 - 2023 高対称性セラミックスにおけるキンク形成機構の深化と展開
  • 2019 - 2021 Characterization of kink deformation forward toughened ceramics coating
  • 2018 - 2020 Crystal plasticity approach for novel thermal-resistance ceramics coating
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Papers (34):
  • Fei Shen Ong, Kohta Nambu, Kenta Kawamura, Kohei Hosoi, Hiroshi Masuda, Bin Feng, Koji Matsui, Yuichi Ikuhara, Hidehiro Yoshida. Realizing near-full density monophasic tetragonal 1.5-mol% yttria-stabilized zirconia ceramics via current-ramp flash sintering. Acta Materialia. 2024. In press
  • Yuta Aoki, Hiroshi Masuda, Eita Tochigi, Hidehiro Yoshida. Overcoming the intrinsic brittleness of high-strength Al2O3-GdAlO3 ceramics through refined eutectic microstructure. Nature Communications. 2024. 15. 8700
  • Hiroshi Masuda, Tomoharu Tokunaga, Takahisa Yamamoto, Hidehiro Yoshida. Optical and mechanical properties of rutile TiO2 subjected to AC flash processing. Scripta Materialia. 2024. 246. 116088
  • Fei Shen Ong, Kohta Nambu, Kohei Hosoi, Kenta Kawamura, Hiroshi Masuda, Bin Feng, Koji Matsui, Yuichi Ikuhara, Hidehiro Yoshida. Tetragonal phase stabilization and densification in AC flash-sintered 1.5 mol% yttria-stabilized zirconia polycrystals with high toughness. Journal of the European Ceramic Society. 2024. 44. 2. 1036-1043
  • Lieyang Li, Hiroshi Masuda, Hidenobu Murata, Atsushi Nakahira, Hidehiro Yoshida. Densification of hydroxyapatite ceramics by field-assisted sintering followed by controlled current ramp sintering. Journal of the Ceramic Society of Japan. 2023. 131. 10. 723-730
more...
MISC (6):
  • Hiroshi Masuda, HIdehiro Yoshida. 通電焼結技術を利用した柔軟なセラミックスの創出. Function & Materials. 2023. 43. 2. 44-50
  • Hiroshi Masuda, Hidehiro Yoshida. フラッシュ焼結技術による柔軟なセラミックスの創出. FC Report. 2023. 41. 1
  • Hiroshi MASUDA. Anomalous Mechanical Responses in Flash-Processed Ceramics. Journal of the Japan Society of Powder and Powder Metallurgy. 2023. 70. 1. 30-35
  • Hiroshi Masuda. Micromechanical Behaviors and Plastic Deformation Mechanisms of Ceramics. Materia Japan. 2021. 60. 2. 96-100
  • Hidehiro Yoshida, Hiroshi Masuda, Koji Morita, Takahisa Yamamoto. Strong field-induced nanodynamics in ceramics. Materia Japan. 2021. 60. 1. 19-24
more...
Patents (2):
  • セラミックスの製造方法及びセラミックス
  • 熱遮蔽コーティング、及びこれを用いたタービン用ブレード部材
Lectures and oral presentations  (1):
  • Small-scale plasticity of oxide ceramics: impacts of orientations and grain boundaries
    (TimeMan Seminar 2024)
Education (2):
  • 2013 - 2018 The University of Tokyo Department of Materials Engineering
  • 2009 - 2013 Kyoto University Undergraduate School of Engineering Science
Professional career (1):
  • PhD (The University of Tokyo)
Work history (4):
  • 2023/09 - 現在 The University of Tokyo Department of Materials Engineering, Faculty of Engineering Lecturer
  • 2019/10 - 2023/08 The University of Tokyo Department of Materials Engineering, Faculty of Engineering Assistant Professor
  • 2018/04 - 2019/09 National Institute for Materials Science International Center for Young Scientists ICYS Research Fellow
  • 2016/04 - 2018/03 Japan Society for the Promotion of Science JSPS Fellow (DC2)
Awards (7):
  • 2024/03 - Exploratory Award, Faculty of Engineering, The University of Tokyo
  • 2019/09 - Young Researcher Award, The Japan Institute of Metals and Materials Microscopic mechanisms in high-temperature deformation
  • 2018/02 - Journal of Alloys and Compounds Outstanding Contribution in Reviewing
  • 2017/11 - LIght Metal Paper Prize 2017, The Japan Institute of Light Metals Low-temperature creep mechanism in ultrafine-grained aluminum
  • 2016/09 - EusoSPF 2016 Best Presentation Award Two-dimensional grain boundary sliding and dislocation characteristics in ODS ferritic steel
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Association Membership(s) (3):
THE JAPAN INSTITUTE OF LIGHT METALS ,  THE JAPAN INSTITUTE OF METALS AND MATERIALS ,  The Ceramic Society of Japan
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