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SMA Numerical Modeling Versus Experimental Results: Parameter Identification and Model Prediction Capabilities

机译:SMA数值建模与实验结果:参数识别和模型预测能力

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摘要

In this work, we briefly review the one-dimensional version of a well-known phenomenological shape memory alloy (SMA) constitutive model able to represent the main macroscopic SMA macroscopic behaviors (i.e., superelasticity and shape-memory effect). We then show how to identify the needed parameters from experimental results and, in particular, from strain-temperature tests. We finally use the obtained material parameters to test the prediction properties of the model, comparing numerical results with some experiments (different from those used for the identification), and we discuss model capabilities and further required enhancements.
机译:在这项工作中,我们简要回顾了能够代表主要宏观SMA宏观行为(即超弹性和形状记忆效应)的著名现象学形状记忆合金(SMA)本构模型的一维版本。然后,我们展示如何从实验结果,尤其是从应变温度测试中识别所需的参数。最后,我们使用获得的材料参数来测试模型的预测属性,将数值结果与一些实验(与用于识别的实验不同)进行比较,并讨论模型的功能和进一步的增强要求。

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