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首页> 外文期刊>JSME International Journal. Series A, Solid mechanics and material engineering >Analysis of Bias-Type Actuator Using Shape Memory Alloy Based on Its Thermomechanical Constitutive Description
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Analysis of Bias-Type Actuator Using Shape Memory Alloy Based on Its Thermomechanical Constitutive Description

机译:基于形状记忆合金的偏置型作动器的热机械本构分析

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摘要

Dynamic behaviour of a bias-type actuator using Ti-Ni shape memory alloy is examined theoretically as well as experimentally. The constitutive and the heat equations for the shape memory alloy, derived in the framework of continuum ther-momechanics with phase transformation taken into account, are employed to describe the response of the considered actuator to applied electric input varying in time. Material parameters in the constitutive model adopted are determined from uniaxial loading-unloading tests at different temperatures. An experimental setup of the actuator, consisting of a shape memory alloy wire and a bias spring connected serially, is also manufactured, and the response of the actuator to cyclic electric input is measured. The experimental results obtained are compared with the predictions of the analytical model, which proves promising to describe the behaviour of the actuator very well in terms of its dependence on various factors such as the rigidity of the bias spring, as well as the magnitude and the period of cyclic input.
机译:理论上和实验上都研究了使用Ti-Ni形状记忆合金的偏置型执行器的动态行为。形状记忆合金的本构方程和热方程是在考虑了相变的连续热力学的框架下得出的,用于描述所考虑的执行器对施加的电输入随时间变化的响应。本构模型中的材料参数由不同温度下的单轴加载/卸载测试确定。还制造了由形状记忆合金线和串联的偏置弹簧组成的执行器的实验装置,并测量了执行器对循环电输入的响应。将获得的实验结果与分析模型的预测结果进行比较,这证明有希望很好地描述执行器的性能,因为它取决于各种因素,例如偏置弹簧的刚度,大小和扭矩。循环输入的周期。

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