Abstract

Transformation thermomechanics, which investigates the thermomechanical behavior of materials in the process of transformations, is developed for the shape memory alloys. A unified approach is explained from the macroscopic point of view. The uniaxial stress-strain-temperature hystereses are simulated under static and cyclic load conditions. Experimental results of the transformation start conditions in an Fe-based shape memory alloy are explained in relation to the transformation condition introduced in the theory.

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