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Article cité :
J. Lelatko , H. Morawiec
J. Phys. IV France, 11 PR8 (2001) Pr8-487-Pr8-492
Citations de cet article :
9 articles
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Immiscible nanostructured copper-aluminum-niobium alloy with excellent precipitation strengthening upon friction stir processing and aging
Subhasis Sinha, Mageshwari Komarasamy, Saket Thapliyal, et al. Scripta Materialia 164 42 (2019) https://doi.org/10.1016/j.scriptamat.2019.01.038
Thermomechanical behavior and microstructural evolution of a Ni(Pd)-rich Ni24.3Ti49.7Pd26 high temperature shape memory alloy
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A review of shape memory alloy research, applications and opportunities
Jaronie Mohd Jani, Martin Leary, Aleksandar Subic and Mark A. Gibson Materials & Design (1980-2015) 56 1078 (2014) https://doi.org/10.1016/j.matdes.2013.11.084
A new type of Cu–Al–Ta shape memory alloy with high martensitic transformation temperature
C P Wang, Y Su, S Y Yang, Z Shi and X J Liu Smart Materials and Structures 23 (2) 025018 (2014) https://doi.org/10.1088/0964-1726/23/2/025018
The modeling of the deformation behavior of Cu–Al–Nb–X shape memory alloys containing primary particles
J. Lelatko and H. Morawiec Materials Science and Engineering: A 481-482 684 (2008) https://doi.org/10.1016/j.msea.2007.03.119
The effect of Ni, Co and Cr on the primary particle structure in Cu–Al–Nb–X shape memory alloys
J. Lelatko and H. Morawiec Materials Chemistry and Physics 81 (2-3) 472 (2003) https://doi.org/10.1016/S0254-0584(03)00057-9