Umakoshi Yukichi | National Institute For Materials Science
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概要
関連著者
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Umakoshi Yukichi
National Institute For Materials Science
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Umakoshi Yukichi
National Inst. For Materials Sci.
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馬越 佑吉
大阪大学
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Umakoshi Yukichi
Osaka Univ. Suita Jpn
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Umakoshi Yukichi
大阪大学 医学系研究科器官制御外科学
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Umakoshi Y
Division Of Materials & Manufacturing Science Graduate School Of Engineering Osaka University
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Yasuda Hiroyuki
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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中野 貴由
大阪大学大学院工学研究科マテリアル生産科学専攻
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Nakano Takayoshi
Research Center For Ultra-high Voltage Electron Microscopy Osaka University
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Umakoshi Yukichi
Course Of Materials Science And Engineering Division Of Materials And Manufacturing Science Graduate
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Umakoshi Yukichi
Department Of Materials Science And Engineering & Frontier Research Center Graduate School Of En
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NAKANO Takayoshi
Division of Materials and Manufacturing Sciences, Graduate School of Engineering, Osaka University
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中野 貴由
Div. Of Materials And Manufacturing Sci. Graduate School Of Engineering Osaka Univ.
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Nagase Takeshi
Research Center For Ultra-high Voltage Electron Microscopy Osaka University
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Nakano Takayoshi
Division Of Materials & Manufacturing Science Graduate School Of Engineering Osaka University
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KINOSHITA Koichi
Department of Mechanical Science and Bioengineering, Graduate School of Engineering Science, Osaka U
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Nakano Takayoshi
Graduate School Of Engineering Osaka University
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Kinoshita Koichi
Department Of Mechanical Science And Bioengineering Graduate School Of Engineering Science Osaka Uni
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Kinoshita Koichi
Department Of Gastroenterological Surgery Graduate School Of Medicine Kyoto University
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YASUDA Hiroyuki
Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
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Nagase Takeshi
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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UMAKOSHI Yukichi
Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
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NIINOMI Mitsuo
Institute for Materials Research, Tohoku University
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YASUDA Hiroyuki
Research Center for Ultra-High Voltage Electron Microscopy, Osaka University
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KOIZUMI Yuichiro
Department of Adaptive Machine Systems, Osaka University
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MINAMINO Yoritoshi
Department of Adaptive Machine Systems, Osaka University
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Kawamura Yuuki
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Yasuda Hiroyuki
Research Center For Ultra-high Voltage Electron Microscopy Osaka University
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Yasuda Hiroyuki
Div. Of Materials And Manufacturing Sci. Graduate School Of Engineering Osaka Univ.
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FUKUSHIMA Kouki
Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
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Fukushima Kouki
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Koizumi Yuichiro
Department Of Adaptive Machine Systems Graduate School Of Engineering Osaka University
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Minamino Yoritoshi
Department Of Adaptive Machine Systems Graduate School Of Engineering Osaka University
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KOUZAI Keiji
Division of Materials and Manufacturing Science, Graduate School of Engineering, Osaka University
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Niinomi Mitsuo
Institute For Materials Research Tohoku University
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Kouzai Keiji
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Umakoshi Yukichi
Division Of Materials & Manufacturing Science Graduate School Of Engineering Osaka University
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Kishimoto Takuya
Division Of Materials And Manufacturing Science Graduate School Of Engineering Osaka University
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Koizumi Yuichiro
Department of Adaptive Machine Systems, Graduate School of Engineering, Osaka University
著作論文
- Fabrication of Beta-Ti-Type Ti-Nb-Ta-Zr (TNTZ) Wire with High-Ductility by Arc-Melt-Type Melt-Extraction Method
- Preparation of Zr-Based Metallic Glass Wires for Biomaterials by Arc-Melting Type Melt-Extraction Method
- Magneto-mechanical and Pseudoelastic Damping of Fe-Al Based Single Crystals
- Fabrication of Ti-Zr Binary Metallic Wire by Arc-Melt-Type Melt-Extraction Method
- Pseudoelastic Behavior of Fe-Al Polycrystals
- Temperature Dependence of Twinning Pseudoelasticity in Fe_3Ga Single Crystals