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Design and analysis of a smart soft composite structure for various modes of actuation

机译:用于各种驱动方式的智能软复合结构的设计和分析

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摘要

This article describes a novel design for a smart soft composite structure, capable of four actuating modes, with three different types of scaffold structures, and two shape memory alloy wires embedded above and below the scaffold structures. Each component is combined with polydimethylsiloxane (PDMS) so it has the advantage of a soft morphing motion. Actuating modes, consisting of symmetric, anti-symmetric, asymmetric, and torsional motion, and the associated end edge displacement and twisting angle, were measured according to different ply combinations, which were symmetric, anti symmetric, and asymmetric. The 60-mm actuator is capable of end edge displacement up to 67 mm and twisting up to 85 in a bend-twist coupled motion. In the torsion-only motion, without bending, 108.4 degrees deformation was achieved. Next, a finite element method (FEM) model, based on the Lagoudas shape memory alloy (SMA) model, is presented to predict the actuating performance of the actuator according to the scaffold stacking sequence. Using the FEM model, end edge displacement and twisting angle are compared with experimental data in the four modes of actuation. The actuating trajectory expected from the FEM model is compared with the experimental data. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种智能软复合结构的新颖设计,该结构具有四种启动模式,具有三种不同类型的支架结构,并且在支架结构的上方和下方嵌有两条形状记忆合金丝。每种组分都与聚二甲基硅氧烷(PDMS)结合使用,因此具有软变形运动的优势。根据对称,反对称和不对称的不同帘布层组合,测量了由对称,反对称,不对称和扭转运动以及相关的端边位移和扭转角组成的致动模式。 60毫米执行器的端部边缘位移最大为67毫米,在弯曲扭转耦合运动中最多可弯曲85毫米。在仅扭转运动中,没有弯曲,可实现108.4度的变形。接下来,提出了一种基于Lagoudas形状记忆合金(SMA)模型的有限元方法(FEM)模型,以根据脚手架堆叠顺序预测执行器的执行性能。使用FEM模型,将四种驱动模式下的端部边缘位移和扭转角与实验数据进行了比较。将有限元模型所期望的驱动轨迹与实验数据进行比较。 (C)2016 Elsevier Ltd.保留所有权利。

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