Alloy Ti – 50.2 at.% Ni for Actuators: Evolution of Structure and Shape Memory Effects During Post-Deformation Annealing. Part 2. Influence of Structure and Phase Transformation Special Features on Shape Memory Effects
Author:
Publisher
Springer Science and Business Media LLC
Subject
Metals and Alloys,Mechanics of Materials,Condensed Matter Physics
Link
https://link.springer.com/content/pdf/10.1007/s11041-021-00681-x.pdf
Reference13 articles.
1. E. P. Ryklina, S. D. Prokoshkin, A. A. Chernavina, and N. N. Perevoshchikova, “Investigation on the influence of thermomechanical conditions of induction and structure on the shape memory effects in Ti – Ni alloy,” Inorg. Mater. Appl., 1(3), 188 – 194 (2010).
2. K. A., Polyakova-Vachiyan, E. P. Ryklina, S. D. Prokoshkin, and S. M. Dubinskii, “Dependence of the functional characteristics of thermomechanically processed titanium nickelide on the size of the structural elements of austenite,” Phys. Met. Metallogr., 117(8), 817 – 827 (2016).
3. K. Polyakova, E. Ryklina, and S. Prokoshkin, “Thermomechanical response of titanium nickelide on austenite grain-subgrain size,” Mater. Today: Proc., 4(3), 4836 – 4840 (2017).
4. K. A. Polyakova, E. P. Ryklina, and S. D. Prokoshkin, “Effect of grain size and ageing-induced microstructure on functional characteristics of a Ti – 50.7 at.% Ni alloy,” Shap. Mem. Superelasticity, 6(1), 139 – 147.
5. A. Y. Kolobova, E. P. Ryklina, S. D. Prokoshkin, et al., “Study of the evolution of the structure and kinetics of martensitic transformations in a titanium nickelide upon isothermal annealing after hot helical rolling,” Phys. Met. Metallogr., 119(2), 134 – 145 (2018).
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