Martensitic transformation of grain-size mixed Ti51Ni49 melt-spun ribbons
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference18 articles.
1. Engineering Aspects of Shape Memory Alloys;Wayman,1990
2. Effect of amorphous–crystalline interfaces on the martensitic transformation in Ti50Ni25Cu25
3. On the origin of the two-stage behavior of the martensitic transformation of Ti50Ni25Cu25 shape memory melt-spun ribbons
4. A study of an amorphous-crystalline structured Ti–25Ni–25Cu (at.%) shape memory alloy
5. Some results on shape memory properties of Ti50Ni25Cu25 melt-spun ribbons
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1. Grain-size gradient NiTi ribbons with multiple-step shape transition prepared by melt-spinning;Journal of Materials Science & Technology;2021-04
2. Effect of the precipitates on the thermodynamics of the martensitic transformations in Ti-rich Ni-Ti-Co thin films;Journal of Alloys and Compounds;2020-03
3. Effect of Spun Velocities and Composition on the Microstructure and Transformation Temperatures of TiNi Shape Memory Ribbons;Materials Research;2016-09-12
4. Shape Memory Characteristics of Rapidly Solidified Ti-37.8Cu-18.7Ni Alloy Ribbons;Characterization of Minerals, Metals, and Materials 2015;2015-02-20
5. Shape Memory Characteristics of Rapidly Solidified Ti-37.8Cu-18.7Ni Alloy Ribbons;Characterization of Minerals, Metals, and Materials 2015;2015
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