Martensitic transformation of Ti50(Ni50−xCux) and Ni50(Ti50−xZrx) shape-memory alloys
Author:
Funder
National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Subject
Multidisciplinary
Link
http://www.nature.com/articles/s41598-019-40100-z.pdf
Reference45 articles.
1. Chakravarty, S., Kee, H. Y. & Volker, K. An explanation for a universality of transition temperatures in families of copper oxide superconductors. Nature 428, 53–55 (2004).
2. Buehler, W. J. & Wiley, R. C. TiNi-ductile intermetallic compound. ASM-Trans 55, 269–276 (1962).
3. Firstov, G., Van Humbeeck, J. & Koval, Y. N. High-temperature shape memory alloys: some recent developments. Mater. Sci. Eng. A 378, 2–10 (2004).
4. Bozzolo, G., Noebe, R. D. & Mosca, H. O. Site preference of ternary alloying additions to NiTi: Fe, Pt, Pd, Au, Al, Cu, Zr and Hf. J. Alloys Compd. 389, 80–94 (2005).
5. Zhou, Y. et al. Strain glass in doped Ti50(Ni50 − xDx)(D = Co, Cr, Mn) alloys: Implication for the generality of strain glass in defect-containing ferroelastic systems. Acta Mater. 58, 5433–5442 (2010).
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