Precipitate-induced R-phase in martensitic transformation of as-spun and annealed Ti51Ni49 ribbons
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Metals and Alloys,Mechanical Engineering,Mechanics of Materials
Reference19 articles.
1. Martensitic transformation and shape memory behavior in sputter-deposited TiNi-base thin films
2. On the Ti2Ni precipitates and Guinier–Preston zones in Ti-rich Ti–Ni thin films
3. Shape memory behavior and internal structure of Ti–Ni–Cu shape memory alloy thin films and their application for microactuators
4. The influence of coherent ticu plate-like precipitates on the thermoelastic martensitic transformation in melt-spun Ti50Ni25Cu25 shape memory alloys
5. Transformation behaviour of Ti–Ni and Ti–Ni–Cu alloy ribbons with nano Ti2Ni particles
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1. Improved functional stability of Ti-rich TiNi shape memory ribbon prepared by melt-spinning;Journal of Alloys and Compounds;2020-04
2. Precipitation hardening by nanoscale Ti2Ni phase in high Ti-rich Ti52.6Ni46.8Si0.6 melt-spun ribbon;Journal of Alloys and Compounds;2019-11
3. Effects of composition on transformation temperatures and microstructure of Ni-Ti-Hf shape memory alloys;REM - International Engineering Journal;2019-06
4. Evolution and stability of phases in a high temperature shape memory alloy Ni49.4Ti38.6Hf12;Intermetallics;2014-01
5. Martensitic transformation and pseudoelasticity of aged Ti50.1Ni49.7Si0.2 shape memory ribbon;Materials Science and Engineering: A;2014-01
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