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The behavior of ionic polymer-metal composites in a multi-layer configuration

机译:离子聚合物-金属复合材料在多层结构中的行为

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It has been observed that an ionic polymer-metal composite (IPMC) is both inherently resistive and capacitive. This allows for the material to be modeled using an equivalent RC circuit to describe the charging/discharging behavior associated with the IPMC. Typically, the model includes two resistors and two capacitors, which will primarily account for the effective electrodes on the surface of the IPMC (top and bottom). There will also be a resistor placed between the two RC circuits to account for material between the electrodes and the resistance due to ion migration through the polymer matrix. In this paper we report our recent effort to extend such a model to accommodate a multi-layer IPMC as well as inter-digitated electrodes. As expected, the observed electric characteristics of an IPMC subjected to an electric field are highly non-linear. This is believed to be due primarily to the particle electrodes on the IPMC surface, which is inherently both capacitive and resistive due to particle separation and density. The advantage of using such a model is to realize the capacitive and resistive effects and use them for a multi-layer configuration. We also present typical experimental data.
机译:已经观察到,离子聚合物-金属复合物(IPMC)本质上是电阻性和电容性的。这允许使用等效的RC电路对材料进行建模,以描述与IPMC相关的充电/放电行为。通常,模型包括两个电阻器和两个电容器,这将主要考虑IPMC表面(顶部和底部)上的有效电极。在两个RC电路之间还将放置一个电阻,以说明电极之间的材料以及由于离子迁移通过聚合物基体而产生的电阻。在本文中,我们报告了我们最近为扩展这种模型而做出的努力,以适应多层IPMC以及叉指电极。如所期望的,经受电场的IPMC的观察到的电特性是高度非线性的。据信这主要归因于IPMC表面上的粒子电极,由于粒子的分离和密度,其固有地既具有电容性又具有电阻性。使用这种模型的优点是实现电容效应和电阻效应,并将其用于多层配置。我们还介绍了典型的实验数据。

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