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On the Fremond’s constitutive model for shape memory alloys
Authors:Alessandro P. Baê  ta-Neves, Marcelo A. Savi,Pedro M.C.L. Pacheco,
Affiliation:

aDepartment of Mechanical and Materials Engineering, Instituto Militar de Engenharia, 22.290.270, Rio de Janeiro, Brazil

bCOPPE––Department of Mechanical Engineering, Universidade Federal do Rio de Janeiro, 21.945.970, Cx. Postal 68.503, Rio de Janeiro, Brazil

cCEFET/RJ, Department of Mechanical Engineering, 20271.110, Rio de Janeiro, Brazil

Abstract:
The remarkable properties of shape memory alloys have increasing the interest in applications in different areas varying from biomedical to aerospace hardware. Despite the large number of applications, the modeling of SMA is the objective of many researches developed in order to describe all details of its thermomechanical behavior. The present contribution revisits a constitutive model presented by Savi et al. (2002), which is built up on the classical Fremond’s model, in order to contemplate the horizontal enlargement of the stress–strain hysteresis loop. Numerical simulations present qualitative agreement with experimental data, showing pseudoelastic, one-way and two-way shape memory effects.
Keywords:Shape memory alloys   Constitutive equations   Modeling and simulation
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