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Modeling of coupled phase transformation and reorientation in shape memory alloys under non-proportional thermomechanical loading

机译:非比例热机械载荷下形状记忆合金耦合相变和取向的耦合建模

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摘要

In the present study, a new 3D thermodynamic coupled model is proposed for SMAs. The behavior of SMA structures is described through several strain mechanisms, each associated with its proper internal variables. This model is built to capture the particular behavior of SMAs when subjected to complex loading, namely non-proportional thermomechanical loading. To achieve this task, a new approach to describe the martensitic reorientation mechanism has been introduced in conjuction with a new method to account for forward and reverse transformation. Thermomechanical coupling, related to dissipation and latent heat is fully implemented. The validity of the model is demonstrated by comparing experimental results of complex thermomechanical loading paths of SMA structures with numerical simulations.
机译:在本研究中,针对SMA提出了一种新的3D热力学耦合模型。 SMA结构的行为通过几种应变机制来描述,每种应变机制都与其适当的内部变量相关联。建立此模型的目的是捕获复杂负载(即非比例热机械负载)时SMA的特殊行为。为了实现该任务,结合描述正向和反向转变的新方法,引入了一种描述马氏体重新定向机制的新方法。与耗散和潜热有关的热机械耦合已完全实现。通过将SMA结构的复杂热机械加载路径的实验结果与数值模拟进行比较,证明了该模型的有效性。

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