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Design of an impact drive actuator using a shape memory alloy wire

机译:使用形状记忆合金丝的冲击驱动执行器设计

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This paper introduces an impact drive mechanism (IDM) that utilizes the rapid contraction property of shape memory alloy (SMA) wire. In this study, possible structures for an SMA-wire-based IDM actuator are investigated, and a prototype actuator comprising a main body, an inertia body, an SMA wire, and a bias spring is developed. To verify the applicability of the prototype actuator as a positioning device, driving experiments were conducted under various conditions. The experimental results demonstrated that the prototype actuator enables bidirectional step-like movement with several step sizes by changing the profile of applied voltage, such as amplitude, duty cycle, and frequency. In addition, we developed PIcontroller- based position control systems by using these three parameters as control input; the control characteristics and potential applications of each method were discussed. These results implied that the SMA-wire-based IDM actuator has the potential to be used as a new linear actuator in sub-millimeter order driving.
机译:本文介绍了一种利用形状记忆合金(SMA)线材的快速收缩特性的冲击驱动机构(IDM)。在这项研究中,研究了基于SMA线的IDM执行器的可能结构,并开发了包括主体,惯性体,SMA线和偏置弹簧的原型执行器。为了验证原型执行器作为定位设备的适用性,在各种条件下进行了驱动实验。实验结果表明,原型致动器可以通过改变施加电压的分布(例如幅度,占空比和频率)来实现具有多个步长的双向步进运动。此外,我们通过将这三个参数用作控制输入来开发了基于PIcontroller的位置控制系统。讨论了每种方法的控制特性和潜在应用。这些结果表明,基于SMA线的IDM执行器有潜力用作亚毫米级驱动中的新型线性执行器。

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