Martensite and Reverse Transformations in TiNi SMA during Tension Test Investigated by Advanced Infrared Technique
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概要
- 論文の詳細を見る
- 日本実験力学会の論文
- 2006-06-25
著者
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Tobushi Hisaaki
Department Of Mechanical Engineering Aichi Institute Of Technology
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MAKINO Yoshiyasu
Department of Mechanical Engineering, Aichi institute of Technology
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PIECZYSKA Elzbieta
Institute of Fundamental Technological Research, Polish Academy of Sciences
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NOWACKI Wojciech
Institute of Fundamental Technological Research, Polish Academy of Sciences
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GADAJ Pawel
Institute of Fundamental Technological Research, Polish Academy of Sciences
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HOSHIO Kazumasa
Department of Mechanical Engineering, Aichi Institute of Technology
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Hoshio Kazumasa
Department Of Mechanical Engineering Aichi Institute Of Technology
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Nowacki Wojciech
Institute Of Fundamental Technological Research Polish Academy Of Sciences
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Pieczyska Elzbieta
Institute Of Fundamental Technological Research Polish Academy Of Sciences
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Makino Yoshiyasu
Department Of Mechanical Engineering Aichi Institute Of Technology
関連論文
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- Influence of Strain Ratio on Bending Fatigue Life and Fatigue Crack Growth in TiNi Shape-Memory Alloy Thin Wires
- Deformation Properties of TiNi Shape Memory Alloy
- The Estimation of Temperature Rise in Low-Cycle Fatigue of TiNi Shape-Memory Alloy
- Deformation and Rotary Driving Characteristics of a Shape-Memory Alloy Thin Strip Element
- Subloop Deformation Behavior of TiNi Shape Memory Alloy Subjected to Stress-Controlled Loadings
- Martensite and Reverse Transformations in TiNi SMA during Tension Test Investigated by Advanced Infrared Technique
- Superelastic Deformation Behaviors Based on Phase Transformation Bands in TiNi Shape Memory Alloy
- Mechanical Properties of Shape Memory Polymer of Polyurethane Series : Basic Characteristics of Stress-Strain-Temperature Relationship
- Torsional Deformation and Fatigue Properties of TiNi SMA Thin Strip For Rotary Driving Element
- Superelastic Deformation of TiNi Shape Memory Alloy Subjected to Various Subloop Loadings
- Impact of Strain Rate on Thermomechanical Coupling Effects in TiNi SMA Subjected to Compression