Computational Modeling of Superelastic Behaviors of Shape Memory Alloy Devices Under Combined Stresses

Y. Toi, Daegon Choi
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引用次数: 5

Abstract

The three-dimensional incremental finite element formulation for the multiaxial behavior of shape memory alloy devices is proposed in the present study by considering the coupling effect of the axial and torsional behaviors of shape memory alloys. The previously proposed one-dimensional constitutive model for shape memory alloy devices is extended to take account of the multiaxial stress state introducing some new material constants. The calculated results are compared with the uniaxial, purely torsional and multiaxial test results for NiTi tubes to illustrate the validity of the proposed computational modeling.
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复合应力作用下形状记忆合金器件超弹性行为的计算建模
考虑形状记忆合金轴向和扭转行为的耦合效应,提出了形状记忆合金器件多轴向行为的三维增量有限元计算公式。将形状记忆合金器件一维本构模型扩展到考虑多轴应力状态,引入一些新的材料常数。将计算结果与镍钛管的单轴、纯扭转和多轴试验结果进行了比较,验证了所建计算模型的有效性。
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