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Modeling Permanent Deformations of Superelastic and Shape Memory Materials

机译:模拟超弹性和形状记忆材料的永久变形

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摘要

In this paper we propose a modification of the polycrystalline shape memory alloy constitutive model originally proposed by Souza. By introducing a transformation strain energy with two different hardening coefficients, we are able to take into account the effect of the martensitic transformation of unfavorably oriented grains occurring after the main plateau. By choosing a proper second hardening coefficient, it is possible to reproduce the correct stress strain behavior of the material after the plateau without the need of introducing a much smaller Young modulus for martensite. The proposed modification is introduced in the model comprising permanent deformation effects. Model results for uniaxial stress tests are compared to experimental results showing good agreement.
机译:在本文中,我们提出了对Souza最初提出的多晶形状记忆合金本构模型的修改。通过引入具有两个不同硬化系数的转变应变能,我们能够考虑主平台之后发生的不利取向晶粒的马氏体转变的影响。通过选择合适的第二硬化系数,可以在平台期之后再现材料的正确应力应变行为,而无需为马氏体引入小得多的杨氏模量。在包含永久变形效应的模型中引入了建议的修改。将单轴应力测试的模型结果与显示出良好一致性的实验结果进行比较。

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