Annealing effect on martensitic transformation of severely cold-rolled Ti50Ni40Cu10 shape memory alloy
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,Mechanics of Materials,Metals and Alloys,Mechanical Engineering
Reference30 articles.
1. Shape Memory Characteristics Associated with the B2\ ightleftarrowsB19 and B19\ ightleftarrowsB19′ Transformations in a Ti-40Ni-10Cu (at.%) Alloy
2. Mechanism of B2-B19-B19′ Transformation in Shape Memory Ti–Ni–Cu Alloys
3. Martensitic Transformation Behavior of a Shape Memory Ti–40.5Ni–10Cu Alloy Affected by the C11b-type Precipitates
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1. NiTiCu shape memory alloys with ultra-low phase transformation range as solid-state phase change materials;Acta Materialia;2023-11
2. Effect of Various Thermal Treatments and Cu Contents on Precipitation Mechanism, Martensitic Growth, and Cold Workability of Ti50Ni50-xCux Ternary Shape Memory Alloys;Journal of Materials Engineering and Performance;2021-01
3. Suspended droplet alloying: A new method for combinatorial alloy synthesis; nitinol-based alloys as an example;Journal of Alloys and Compounds;2018-11
4. Study of martensitic transformation in TiNiCuNb shape memory alloys using dynamic mechanical analysis;Vacuum;2018-09
5. Identifying the effects of heat treatment temperatures on the Ti50Ni45Cu5 alloy using dynamic mechanical analysis combined with microstructural analysis;Materials Science and Engineering: A;2018-01
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