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Asymmetrical Bending Model for NiTi Shape Memory Wires: Numerical Simulations and Experimental Analysis

机译:NiTi形状记忆丝的非对称弯曲模型:数值模拟和实验分析

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摘要

A detailed numerical and experimental study of a NiTi Shape Memory Alloy (SMA) wire' subjected to bending is presented in order to provide a complete characterisation of the material under this load case. The beam model presented is based on the classic Euler-Bernoulli theory and uses De la Flor one-dimensional constitutive equations modified to take into account different material responses to tension and compression as well as the different elastic properties of austenite and martensite. All the necessary experimental techniques were designed to determine the bending behaviour of NiTi SMA wire over the entire range of transformation temperatures. These experimental bending results were then compared with the numerical results. The numerical model proposed agrees quantitatively and qualitatively with the experimental bending results obtained for NiTi wire, representing an effective tool for the analysis of one-dimensional structural devices. A comparison of the numerical results that assume symmetrical behaviour between tension and compression with the results that assume asymmetrical behaviour has shown that the tension/compression asymmetry is more pronounced in the martensitic range and has little influence on the response of the SMA wire subjected to bending at temperatures above A_f. These results are analyzed and discussed.
机译:提出了对NiTi形状记忆合金(SMA)线进行弯曲的详细数值和实验研究,目的是在这种载荷情况下提供材料的完整表征。提出的梁模型基于经典的Euler-Bernoulli理论,并使用经修改的De la Flor一维本构方程,以考虑到材料对拉伸和压缩的不同响应以及奥氏体和马氏体的不同弹性。设计了所有必要的实验技术,以确定NiTi SMA丝在整个转变温度范围内的弯曲行为。然后将这些实验弯曲结果与数值结果进行比较。提出的数值模型在质量和质量上均与镍钛丝的弯曲实验结果吻合,是分析一维结构器件的有效工具。将假定拉伸和压缩为对称行为的数值结果与假定为非对称行为的数值结果进行比较,结果表明,拉伸/压缩不对称性在马氏体范围内更为明显,并且对SMA钢丝弯曲时的响应几乎没有影响在高于A_f的温度下。对这些结果进行了分析和讨论。

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