Shape Memory Behavior of Ti-40.5Ni-10Cu Alloy Affected by C11_b-Type Precipitates
スポンサーリンク
概要
著者
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FUKUDA Takashi
Department of Materials Science and Engineering, Graduate School of Engineering, Osaka University
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佐分利 敏雄
関西大学工学部
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Saburi Toshio
Department Of Material Science And Engineering Osaka University
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Kakeshita Tomoyuki
Department Of Material Science And Engineering Graduated School Of Engineering Osaka University
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掛下 知行
大阪大学大学院工学研究科
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Fukuda T
National Institute Of Advanced Industrial Science And Technology Hokkaido Center
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KITAYAMA Makoto
Department of Materials Science and Engineering, Faculty of Engineering Osaka University
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Fukuda Takashi
Department Of Bioscience And Biotechnology Faculty Of Agriculture Shinshu University
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Kitayama M
Department Of Materials Science And Engineering Faculty Of Engineering Osaka University
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- PREFACE
- PREFACE
- 変位型構造相変態に及ぼす強磁場効果
- Ti-Ni-Cu形状記憶合金のマルテンサイト変態に及ぼす静水圧効果
- Stress Induced R→B2 Transformation and Pseudoelasticity Associated with Twinning in a Ti-Ni Alloy Including Aligned Particles of Ti_3Ni_4
- Two-Way Shape Memory Properties of a Ni-Rich Ti-Ni Alloy Aged under Tensile-Stress
- Shape Memory Behavior of Ti-40.5Ni-10Cu Alloy Affected by C11_b-Type Precipitates
- Martensitic Transformation Behavior of a Shape Memory Ti-40. 5Ni-10Cu Alloy Affected by the C11_b-type Precipitates
- マルテンサイト変態の時間依存性
- Utility Values in Japanese Patients with Exudative Age-Related Macular Degeneration
- Magnetic-Field-Induced Strain of Shape-Memory Alloy Fe3Pt Studied by a Capacitance Method in a Pulsed Magnetic Field
- Field-Induced Strain of Shape Memory Alloy Fe–31.2%Pd Using a Capacitance Method in a Pulsed Magnetic Field
- Ti-50.2Ni (at%) 合金と Ti-47.5Ni-2.5Fe (at%) 合金における形状記憶効果と擬弾性におよぼす加工熱処理の影響(チタンおよびチタン合金)
- Ti-NiおよびTi-Ni-Cu形状記憶合金の変形挙動に及ぼす熱処理の影響 (形状記憶合金の可能性を探る)
- 形状記憶効果とその応用
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- Ni3Ge単結晶における降伏応力の温度および方位依存性
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- Effect of Magnetic Field on Successive γ→ε′→α′ Isothermal Martensitic Transformation in a SUS304L Stainless Steel
- Morphological characteristics of the orthorhombic martensite in a shape memory Ti-Ni-Cu alloy.
- Effect of Magnetic Field on Successive γ→ε'→α' Isothermal Martensitic Transformation in a SUS304L Stainless Steel