Numéro |
J. Phys. IV France
Volume 05, Numéro C8, Décembre 1995
International Conference on Martensitic Transformations – ICOMAT 95
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Page(s) | C8-895 - C8-900 | |
DOI | https://doi.org/10.1051/jp4/199558895 | |
Publié en ligne | 14 juillet 2014 |
Cycling Effects on Transformation Behaviour in Shape Memory CuZnAl Alloys
1
University of Firat, Physics Department, 23169 Elaziğ, Turkey
2
University of Süleyman Demirel, Physics Department, 32260 Isparta, Turkey
Shape memory alloys transform martensitically to close packed structures and have internally faulted structures in martensitic condition, and they are very sensitive to cycling and ageing effects In noble metal copper based alloys, martensitic transformation occurs from a cubic structure with B2 (or DO3) order to a long period layered structure 9R (or 18R). In a single crystal of parent phase, 24 martensite variants grouped around six {110}bcc matrix planes can be formed at temperatures below Ms. These alloys deform by variant transformations, in case they are stressed in the martensitic condition. Cycling effects on transformation behaviour in two shape memory CuZnAl alloys received in the closed-coil form called shape memory actuator which have originally open-coil form in austeniuc condition have been investigated Shape memory alloys remain in the deformed shape in martensitic condition and recover the original form in austenitic condition and the shape memory actuators cycle between the open and closed-coil configurations on heating above Af and cooling below Mf temperatures. These effects are attributed to the reversible transition between the austenite and martensite phases These alloys are metastable in martensitic condition, and cycling effects also contribute to the martensite stabilization.
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