Rchr
J-GLOBAL ID:200901032591737942
Update date: Nov. 19, 2024
Inamura Tomonari
イナムラ トモナリ | Inamura Tomonari
Affiliation and department:
Job title:
Professor
Research field (2):
Structural and functional materials
, Metallic materials
Research keywords (1):
Physical and mechanical properties depending on composition and processing
Research theme for competitive and other funds (20):
- 2021 - 2025 Guiding principle of long-life shape memory alloy by controlling domain structure and strengthening
- 2018 - 2023 異分野融合によるキンク形成・強化の理論構築
- 2018 - 2021 ねじれたドメイン組織に基づく形状記憶合金の機能劣化機構と超長寿命化原理の解明
- 2014 - 2019 Quest for fundamental dynamics of domain homo interface in shape change materials and principles for high performance materials
- 2017 - 2018 形状記憶合金のねじれたドメイン構造のダイナミクスの数理モデル(国際共同研究強化)
- 2015 - 2018 格子チューニングによる超長寿命形状記憶合金の設計原理とスーパーニチノールの開発
- 2014 - 2017 Ultramicroscopy study of formation dynamics and three dimensional structure of thermoelastic martensitic phase
- 2015 - 2017 微小材料試験による形状記憶合金の寸法効果と完全形状回復を示す臨界材料寸法の解明
- 2014 - 2016 Study on anomalous low temperature aging and strengthening of gold-titanium based superelastic alloys exhibiting high biocompatibility and X-ray radiography for practical applications
- 2012 - 2015 無拡散変態で生じるねじれ欠陥の制御による形状記憶合金の超長寿命化原理
- 2008 - 2010 高成形性・高速巨大歪を示すNiMnGa粒/空孔/樹脂複合超磁歪材料の微視力学創製
- 2008 - 2010 Perfect superelasticity by dispersion of effective precipitate routed through brittle phase in biomedical titanium alloy
- 2006 - 2008 マルチンサイト変態の無双晶化による形状記憶合金の高出力・極低損失化
- 2008 - 2008 弾性異方性の微視力学設計による巨大磁気異方性の発現と希土類フリー新強力磁石の開発
- 2005 - 2007 新医用形状記憶チタン合金アクチュエータの結晶方位配向化による高機能発現
- 2005 - 2007 Control of microstructure and mechanical anisotropy of biomedical superelastic titanium alloys through introducing high density lattice defects.
- 2004 - 2006 生体用超弾性チタン合金の結晶学・微視組織学的設計による高機能・高信頼性化
- 2004 - 2005 Design of high-performance biomedical shape memory titanium alloys
- 2004 - 2005 生体用超弾性・形状記憶チタン合金の結晶学・微視組織学的設計による高機能・高信頼性化
- 2004 - 2004 熱処理を低温・短時間化する超音波印加処理法の開発と組織制御と表面処理への利用
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Papers (65):
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Wan-Ting Chiu, Ryunosuke Hayakawa, Naoki Nohira, Masaki Tahara, Tomonari Inamura, Hideki Hosoda. Evaluations of Mechanical Properties and Functionalities of the Al- and Zr-Tailored Ti-5.5Mo Shape Memory Alloys for Biomedical Applications. Metallurgical and Materials Transactions A. 2024
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Wan-Ting Chiu, Ryunosuke Hayakawa, Naoki Nohira, Masaki Tahara, Tomonari Inamura, Hideki Hosoda. Mechanical properties of various thermomechanical processed Ti-Mo-Al-Zr and pseudo (Ti-Zr)-Mo shape memory alloys for biomedical applications. Materialia. 2024. 102194-102194
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Xueyu Zhang, Ryutaro Matsumura, Yuri Shinohara, Tomonari Inamura. Origin of bent ridge-kink based on disclination relaxation. International Journal of Solids and Structures. 2024. 298. 112829-112829
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A. Heima, Y. Shinohara, H. Akamine, M. Nishida, T. Inamura. Peculiar martensitic microstructure and dislocation accumulation behavior in Ti-Ni-Cu shape memory alloys almost satisfying the triplet condition. Acta Materialia. 2024. 269. 119823-119823
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Wan-Ting Chiu, Ryunosuke Hayakawa, Naoki Nohira, Masaki Tahara, Tomonari Inamura, Hideki Hosoda. Correspondence of the aging behaviors and the phase constituents of the Ti-Mo-based alloys tailored by the Al and Zr additions. Journal of Alloys and Compounds. 2024. 174509-174509
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MISC (207):
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Kengo Igawa, Tso Fu Mark Chang, Chun Yi Chen, Akira Umise, Takashi Nagoshi, Masaki Tahara, Tomonari Inamura, Hideki Hosoda, Volodymyr A. Chernenko, Masato Sone. Micro-compression study of Ni-Fe(Co)-Ga magnetic shape memory alloy for MEMS sensors. Proceedings of IEEE Sensors. 2017. 2017-December. 1-3
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Masaki Tahara, Nao Okano, Tomonari Inamura, Hideki Hosoda. Plastic deformation behaviour of single-crystalline martensite of Ti-Nb shape memory alloy. SCIENTIFIC REPORTS. 2017. 7
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Kazuki Endoh, Masaki Tahara, Tomonari Inamura, Hideki Hosoda. Effect of Sn and Zr content on superelastic properties of Ti-Mo-Sn-Zr biomedical alloys. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING. 2017. 704. 72-76
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Kazuki Endoh, Masaki Tahara, Tomonari Inamura, Hideki Hosoda. Effect of Sn and Zr addition on the martensitic transformation behavior of Ti-Mo shape memory alloys. JOURNAL OF ALLOYS AND COMPOUNDS. 2017. 695. 76-82
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Tomonari Inamura, Masatoshi Ii, Masaki Tahara, Hideki Hosoda. Formation process of the incompatible martensite microstructure in a beta-titanium shape memory alloy. ACTA MATERIALIA. 2017. 124. 351-359
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Books (2):
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Mechanical properties of shape memory alloys
Woodhead Publishing in Materials 2008
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Mechanical properties of shape memory alloys
Woodhead Publishing in Materials 2008
Lectures and oral presentations (280):
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Phase Constitution and Mechanical Propertu of Ti-Cr and Ti-Cr-Sn Alloys Containing 3d Transition Metal Elements
(THERMEC'2009 2010)
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Phase Equilibrium of the AuMn-Cu2MnGa System
(THERMEC'2009 2010)
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Effect of Carbon Addition on Shape Memory Properties of TiNb Alloys
(Mat.Sci.Forum 2010)
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Stress Amplitude Dependence of Internal Friction in TiNbAl Shape Memory Alloys
(Mat.Sci.Forum 2010)
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Crystallographic Orientation and Stress-amplitude Dependence of Damping in Martensite in Textured Ti-Nb-Al Shape Memory Alloy
(Acta Materialia,accepted 2010)
more...
Education (2):
- - 2003 Tokyo Institute of Technology Graduate School, Division of Integrated Science and Engineering Department of Materials Science and Engineering
- - 1998 Tokyo Metropolitan University Faculty of Science
Professional career (1):
- Doctor of Engineering (Tokyo Institute of Technology)
Work history (7):
- 2017/10 - 2018/09/30 University of Oxford The Queen's College Fellow Commoner
- 2017/10 - 2018/09/30 University of Oxford Mathematical Institute Academic Visitor
- 2018/04/01 - Tokyo Institute of Technology Institute of Innovative Research Professor
- 2016/04/01 - 2018/03/31 Tokyo Institute of Technology Institute of Innovative Research Associate Professor
- 2010/08/01 - 2016/03/31 Tokyo Institute of Technology Precision and Intelligence Laboratory Associate Professor
- 2007/04/01 - 2010/07/31 Tokyo Institute of Technology Precision and Intelligence Laboratory Assistant Professor
- 2003/04/01 - 2007/03/31 Tokyo Institute of Technology Precision and Intelligence Laboratory Research Associate
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Awards (16):
- 2016/03 - 手島記念研究賞(発明賞)
- 2016/03 - 日本金属学会 日本金属学会功績賞(組織部門)
- 2016/03 - 日本金属学会 日本金属学会組織写真賞優秀賞
- 2015/03 - 東京工業大学 東工大の星
- 2013/09 - 日本金属学会 日本金属学会村上奨励賞
- 2013/04 - 文部科学省 文部科学大臣表彰 若手科学者賞
- 2011 - 日本金属学会 日本金属学会組織写真賞最優秀賞
- 2011 - International Metallographic Contest First Place
- 2011 - 東京工業大学 東京工業大学挑戦的研究賞
- 2010 - 日本機械学会 日本機械学会材料力学部門優秀講演表彰
- 2009/03 - 日本金属学会 日本金属学会論文賞
- 2008/11 - ISAEM-2008 Best Poster Presentation
- 2007/09 - The Japan Institute of Metals JIM Young Researcher Award
- 2007 - 第17回日本金属学会奨励賞
- 2004 - Tokyo Institute of Technology Tejima Award
- 2002 - Award for Encouragement of Research in Materials Science;The Materials Research Society of Japan
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Association Membership(s) (2):
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