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Numerical simulation of a double SMA wire actuator using the two-way shape memory effect of SMA

机译:利用SMA的双向形状记忆效应的双SMA线驱动器的数值模拟。

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摘要

A structure using the two-way shape memory effect (TWSME) returns to its initial shape by increasing or decreasing the temperature under initial residual stress. Through the thermo-mechanical constitutive equation of the shape memory alloy (SMA) proposed by Lagoudas et al (1996 Mech. Compos. Mater. Struct. 3 153-79), we simulate the behavior of a double SMA wire actuator in which two SMA wires are attached to the tip of a bar under the initially given residual stress. Through the numerical results conducted in the present study, the behavior and characteristics of an SMA actuator with two SMA wires are shown to be quite different from those of a single wire actuator, and the proposed actuator device is suitable for repeated actuation. A thermal cycle needs to be applied to the double SMA wire actuator for it to return to the original position. The proper thermal cycle for repeated actuation is proposed in the present study. The simulation algorithm proposed in the present study can be applied extensively to the analysis of the assembled system of SMA actuator and host structure in practical applications.
机译:使用双向形状记忆效应(TWSME)的结构通过在初始残余应力下升高或降低温度来恢复其初始形状。通过Lagoudas等人(1996 Mech。Compos。Mater。Struct。3 153-79)提出的形状记忆合金(SMA)的热机械本构方程,我们模拟了其中两个SMA的双SMA导线执行器的行为。钢丝在最初施加的残余应力作用下连接到钢筋的尖端。通过在本研究中进行的数值结果,显示了具有两条SMA线的SMA致动器的行为和特性与单线致动器的行为和特性有很大不同,并且所提出的致动器装置适合于重复致动。需要对双SMA导线执行器执行热循环,以使其返回原始位置。在本研究中提出了用于重复驱动的适当的热循环。本研究提出的仿真算法可广泛应用于实际应用中的SMA执行器和主机结构组装系统的分析。

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