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Modeling and numerical simulation of the pseudoelastic behavior of shape memory alloy circular rods under tension-torsion combined loading

机译:形状记忆合金圆杆拉扭复合载荷拟弹性行为的建模与数值模拟

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摘要

Most research on the behavior of shape memory alloys (SMAs) under tension-torsion combined loading has focused on tubular materials. In contrast to tubular SMAs, SMA rods have unique characteristics. When an SMA rod is twisted, the central region remains elastic while the outer layer undergoes a martensite transformation. The nonlinear stress distribution of an SMA rod through the radial direction gives the SMA rod peculiarities, and this is the primary factor that makes analysis of the stress-strain behavior difficult. The authors suggest a material model that can represent the stress-strain behavior of an SMA rod under tension-torsion combined loading. The proposed model is based on Brinson's phase transformation kinetics and the plastic flow rules. Furthermore, the yield is assumed to be in accordance with the Von Mises criterion and the effect of thermal expansion is not considered. The authors also present some numerical solutions of the proposed model in the context of isothermal strain and stress processes ( proportional and nonproportional loading) in the pseudoelastic region. According to simulation results, the stress-strain behavior of an SMA solid rod under biaxial loading differs from that of a thin-walled tube or a rod under one-dimensional loading.
机译:关于形状记忆合金(SMAs)在拉伸-扭转组合载荷作用下的行为的大多数研究都集中在管状材料上。与管状SMA相比,SMA棒具有独特的特性。当SMA杆扭转时,中心区域保持弹性,而外层经历马氏体相变。 SMA杆在径向上的非线性应力分布提供了SMA杆的特殊性,这是使应力-应变行为分析变得困难的主要因素。作者提出了一种材料模型,该模型可以表示SMA杆在拉扭组合载荷下的应力应变行为。所提出的模型基于布林森的相变动力学和塑性流动规律。此外,假定产量符合冯·米塞斯(Von Mises)标准,并且不考虑热膨胀的影响。作者还提出了在拟弹性区域中等温应变和应力过程(比例和非比例载荷)的情况下所提出模型的一些数值解。根据仿真结果,SMA实心棒在双轴载荷下的应力-应变行为不同于薄壁管或一维载荷下的棒的应力-应变行为。

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