Martensitic transformation of annealed Ti50Ni25Cu25 melt-spun ribbons
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference23 articles.
1. Engineering Aspects of Shape Memory Alloys;Wayman,1990
2. A study of B2↔B19↔B19′ two-stage martensitic transformation in a Ti50Ni40Cu10 alloy
3. Cu-Content Dependence of Shape Memory Characteristics in Ti–Ni–Cu Alloys
4. Shape Memory Characteristics and Lattice Deformation in Ti–Ni–Cu Alloys
5. Two-stage B2–B19–B19′ martensitic transformation in a Ti50Ni30Cu20 alloy observed by synchrotron radiation
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1. Recent advances in multicomponent NiTi-based shape memory alloy using metallic glass as a precursor;Progress in Materials Science;2022-01
2. WITHDRAWN: Recent advances in multicomponent NiTi-based shape memory alloy using metallic glass as a precursor;Progress in Materials Science;2021-05
3. Solidification Rate Dependence of Microstructures and Transformation Behavior of Ti–Ni–Hf Alloys;Journal of Nanoscience and Nanotechnology;2018-09-01
4. Transformational and pseudoelastic characteristics of melt-spun Ti50Ni25Cu25 shape memory ribbon crystallized and aged at a low temperature;Journal of Alloys and Compounds;2018-07
5. A study on the crystallization behavior of amorphous Ti50Ni25Cu25 shape memory ribbon by X-ray diffraction measurement;Intermetallics;2018-02
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