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A shape memory alloy-based soft morphing actuator capable of pure twisting motion

机译:基于形状记忆合金的可实现纯扭转运动的软变形执行器

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This article introduces a novel design for a soft morphing actuator capable of pure twisting motion through a pair of shape memory alloy wires embedded in a polydimethylsiloxane matrix at constant and opposite eccentricity across the cross section in opposite directions. This report introduces the design of the actuator, the manufacturing method, and experimental results for the twisting angle and twisting force when varying the dimensions of the matrix of the actuator. Afterward, a simple model is applied to verify the effect of matrix dimensions on the twisting angle of the actuator. The results show that there is an optimal actuator thickness for both the twisting angle and the twisting force of the actuator, that there is a trade-off between the twisting angle and the twisting force for the actuator's thickness, and that a longer length is better for both metrics within the tested dimensions.
机译:本文介绍了一种新颖的软变形执行器设计,该设计能够通过嵌入在聚二甲基硅氧烷基体中的一对形状记忆合金线以相反方向的恒定和相反偏心率进行纯扭转运动。本报告介绍了执行器的设计,制造方法以及改变执行器矩阵尺寸时的扭转角和扭转力的实验结果。然后,使用一个简单的模型来验证矩阵尺寸对执行器扭转角的影响。结果表明,对于执行器的扭转角和扭转力,都有一个最佳的执行器厚度;对于执行器的厚度,在扭转角和扭转力之间要进行权衡,并且长度越长越好在测试范围内的两个指标。

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