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Finite-element modeling of shape memory alloy components in smart structures, part I: Non-linear coupled field finite element procedure

机译:智能结构中形状记忆合金部件的有限元建模,第一部分:非线性耦合场有限元程序

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In this paper, we introduce a finite element procedure for modeling of shape memory alloy components used in smart structures' applications. The procedure addressed in this paper is based on sequential solution of two main finite-element procedures then combining them together after each iteration. The procedure is set up to be extensible to any geometrical shape and any SMA constitutive model. It is also proved capable of capturing different characteristics of the system as required such as structural and thermal non-linearity, variable SMA material properties and the ability to model coupled electrical, thermal and structural loading and boundary conditions. The procedure was applied to model an SMA wire and the results for the wire was compared with corresponding numerical and experimental results from literature for different loading cases and at different boundary conditions, the results showed very good agreement with both experimental and numerical results.
机译:在本文中,我们介绍了一种用于智能结构应用中的形状记忆合金部件建模的有限元程序。本文介绍的过程基于两个主要有限元过程的顺序求解,然后在每次迭代后将它们组合在一起。该程序设置为可扩展为任何几何形状和任何SMA本构模型。它还被证明能够捕获所需的系统不同特征,例如结构和热非线性,可变的SMA材料特性以及对耦合的电,热和结构载荷以及边界条件进行建模的能力。将该程序应用于SMA导线的建模,并将该导线的结果与文献中相应的数值和实验结果进行了比较,这些结果与文献针对的是不同的载荷情况和不同的边界条件,结果与实验和数值结果非常吻合。

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