We present a three-dimensional thermodynamically-consistent phenomenological model fo the magneto-mechanical behavior of magnetic shape memory materials featuring a cubic-totetragonal martensitic transformation. Existence of energetic solutions for both the constitutive relation problem and the three-dimensional quasi-static evolution problem are proved. The proposed model reduces to some former one via parameter asymptotics by means of a rigorous Gamma-convergence argument.

A three-dimensional phenomenological model for Magnetic Shape Memory Alloys

F Auricchio;A Reali;U Stefanelli
2011

Abstract

We present a three-dimensional thermodynamically-consistent phenomenological model fo the magneto-mechanical behavior of magnetic shape memory materials featuring a cubic-totetragonal martensitic transformation. Existence of energetic solutions for both the constitutive relation problem and the three-dimensional quasi-static evolution problem are proved. The proposed model reduces to some former one via parameter asymptotics by means of a rigorous Gamma-convergence argument.
2011
Istituto di Matematica Applicata e Tecnologie Informatiche - IMATI -
Magnetic Shape Memory Alloys; Rate-independence; Energetic solutions
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/84200
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