Science · 2011 · 445 citations · 36 references
In superelastic alloys, large deformation can revert to a memorized shape after removing the stress. However, the stress increases with increasing temperature, which limits the practical use over a wide temperature range. Polycrystalline Fe-Mn-Al-Ni shape memory alloys show a small temperature dependence of the superelastic stress because of a small transformation entropy change brought about by a magnetic contribution to the Gibbs energies. For one alloy composition, the superelastic stress varies by 0.53 megapascal/°C over a temperature range from -196 to 240°C.
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Magnetic-field-induced shape recovery by reverse phase transformation
Ryosuke Kainuma, Y. Imano, Wataru Ito et al. · Nature · 2006 · 1.8K citations
Ferrous Polycrystalline Shape-Memory Alloy Showing Huge Superelasticity
Yasuhito Tanaka, Y. Himuro, Ryosuke Kainuma et al. · Science · 2010 · 530 citations