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A bio-inspired multi degree of freedom actuator based on a novel cylindrical ionic polymer-metal composite material

机译:基于新型圆柱形离子聚合物-金属复合材料的生物启发式多自由度执行器

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In this work, we explore a promising electroactive polymer (EAP), called ionic polymer-metal composite (IPMC) as a material to use as a multi degree of freedom actuator. Configuration of our interest is a cylindrical IPMC with 2-DOF electromechanical actuation capability. The desired functionality was achieved by fabricating unique inter-digitated electrodes. Firstly, a 3D finite element (FE) model was introduced as a design tool to validate if the concept of cylindrical actuators would work. The FE model is based upon the physical transport processes — field induced migration and diffusion of ions. Secondly, based upon the FE modeling we fabricated a prototype exhibiting desired electromechanical output. The prototype of cylindrical IPMC has a diameter of 1 mm and a 20 mm length. We have successfully demonstrated that the 2-DOF bending of the fabricated cylindrical IPMCs is feasible. Furthermore, the experimental results have given new insight into the physics that is behind the actuation phenomenon of IPMC.
机译:在这项工作中,我们探索了一种有前途的电活性聚合物(EAP),称为离子聚合物-金属复合材料(IPMC),可以用作多自由度致动器的材料。我们感兴趣的配置是具有2-DOF机电致动功能的圆柱形IPMC。通过制造独特的叉指电极可以实现所需的功能。首先,引入3D有限元(FE)模型作为设计工具,以验证圆柱执行器的概念是否可行。 FE模型基于物理传输过程-场诱导的离子迁移和扩散。其次,基于有限元建模,我们制造了展示所需机电输出的原型。圆柱形IPMC的原型直径为1毫米,长度为20毫米。我们已经成功地证明了制造的圆柱形IPMC的2-DOF弯曲是可行的。此外,实验结果对IPMC致动现象背后的物理学有了新的认识。

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