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Finite Element Analysis of Shape Memory Alloy Adaptive Trusses with Geometrical Nonlinearities
Authors:Eduardo Lutterbach Bandeira  Marcelo Amorim Savi  Paulo Cesar da Camara Monteiro Jr  Theodoro Antoun Netto
Institution:(1) Departamento de Engenharia Mecanica, COPPE – Universidade Federal do Rio de Janeiro, 21.941.972, P.O. Box 68.503, Rio de Janeiro, Brazil;(2) Departamento de Engenharia Oceanica, COPPE–Universidade Federal do Rio de Janeiro, LTS 21.945.970, P.O. Box 68.508, Rio de Janeiro, Brazil
Abstract:This contribution deals with the nonlinear analysis of shape memory alloy (SMA) adaptive trusses employing the finite element method. Geometrical nonlinearities are incorporated into the formulation together with a constitutive model that describes different thermomechanical behaviors of SMA. It has four macroscopic phases (three variants of martensite and an austenitic phase), and considers different material properties for austenitic and martensitic phases together with thermal expansion. An iterative numerical procedure based on the operator split technique is proposed in order to deal with the nonlinearities in the constitutive formulation. This procedure is introduced into ABAQUS as a user material routine. Numerical simulations are carried out illustrating the ability of the developed model to capture the general behavior of shape memory bars. After that, it is analyzed the behavior of some adaptive trusses built with SMA actuators subjected to different thermomechanical loadings.
Keywords:Shape memory alloy  Finite element  Abaqus  Numerical simulation
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