The Effect of Low Temperature Aging and the Evolution of R-Phase in Ni-Rich NiTi
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanics of Materials,General Materials Science
Link
http://link.springer.com/article/10.1007/s40830-018-0193-9/fulltext.html
Reference13 articles.
1. Kim JI, Miyazaki S (2005) Effect of nano-scaled precipitates on shape memory behavior of Ti-50.9 at.% Ni alloy. Acta Mater 53:4545–4554
2. Pourbabak S, Wang X, Van Dyck D, Verlinden B, Schryvers D (2017) Ni cluster formation in low temperature annealed Ni50.6Ti49.4. Funct Mater Lett 10(1):1740005
3. Pérez-Sierra AM, Pons J, Santamarta R, Karaman I, Noebe RD (2016) Stability of a Ni-rich Ni-Ti-Zr high temperature shape memory alloy upon low temperature aging and thermal cycling. Scr Mater 124:47–50
4. Duerig TW, Pelton AR, Bhattacharya K (2017) The measurement and interpretation of transformation temperatures in Nitinol. Shape Mem Superelast 3:485–498
5. ASTM Designation: F 2004–16 (2000) Standard test method for transformation temperature of nickel–titanium alloys by thermal analysis
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