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Mechanics of Electroactive Polymer Actuators

机译:电活性聚合物致动器的力学

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A composite actuator based on a polymer electrolyte and metal electrodes is described. Electrode deposition is described qualitatively with corresponding experimental results. A general continuum model describing the transport and deformation of solid polymer electrolyte processes is developed. The formulation is based on global integral postulates for the conservation of mass, momentum, energy, charge, and the second law of thermodynamics. The global equations are then localized in the volume and on the material surfaces bounding the polymer. The model is simplified to a three component system of a fixed negatively charged polymeric matrix, diffusing hydroxonium ions, and free water within the polymer matrix. Contrary to the existing electrostatic models, the deformation is attributed to water induced swelling. The proposed osmotic pressure based model includes the stress relaxation phenomenon due to water redistribution governed by Darcy's law.
机译:描述了基于聚合物电解质和金属电极的复合致动器。用相应的实验结果定性地描述电极沉积。开发了一种描述固体聚合物电解质方法的运输和变形的一般连续模型。该制剂基于全球整体假设,用于保护群众,势头,能源,收费和热力学第二定律。然后将全局方程定位在体积和限定聚合物的材料表面上。该模型被简化为固定带负电荷的聚合物基质,扩散羟基离子和聚合物基质内的游离水的三个组分系统。与现有的静电模型相反,变形归因于水诱导的膨胀。所提出的渗透压基础模型包括由于达西法管辖的水再分配而受到应力松弛现象。

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