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Combining thermodynamic principles with Preisach models for superelastic shape memory alloy wires

机译:将热力学原理与Preisach模型相结合,用于超弹性形状记忆合金线

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We present a simple model for simulating the response of a superelastic shape memory alloy wire based on the thermodynamics of irreversible processes, which can simulate the full thermomechanical response including internal hysteresis loops, at different temperatures, with minimal data input. The key idea is to separate the dissipative response and the elastic response of shape memory alloys using a Gibbs potential based formulation, and then use a Preisach model for the dissipative part of the response. This enables better handling of the features observed in the superelastic response such as those due to changes in temperature and internal hysteresis loops. We compare the predicted response with experiments performed on 0.75mm NiTi shape memory alloy wires at three different temperatures.
机译:我们提供了一个简单的模型,用于基于不可逆过程的热力学来模拟超弹性形状记忆合金线的响应,该模型可以在最小的数据输入下,模拟不同温度下的完整热力学响应,包括内部磁滞回线。关键思想是使用基于吉布斯势的公式将形状记忆合金的耗散响应和弹性​​响应分开,然后对响应的耗散部分使用Preisach模型。这样可以更好地处理在超弹性响应中观察到的特征,例如由于温度变化和内部磁滞回线引起的特征。我们将预测的响应与在三种不同温度下在0.75mm NiTi形状记忆合金丝上进行的实验进行比较。

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