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The thermomechanical constitutive model for fully dense shape memory alloys (SMAs) developed in Part I [D.C. Lagoudas, P.B. Entchev, to be published. Modeling of transformation-induced plasticity and its effect on the behavior of porous shape memory alloys. Part I: constitutive model for fully dense SMAs, Mechanics of Materials, this issue] of this two-paper series is used in a micromechanical averaging...
A three-dimensional rate-independent thermomechanical constitutive model for fully dense shape memory alloys (SMAs) is developed in this Part I of a two-paper series. The model accounts for simultaneous development of transformation and plastic strains during stress-induced martensitic phase transformation, as well as for the evolution of shape and size of the hysteresis with repeated transformation...
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