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Effects of water content on the actuation performance of ionic polymer-metal composites

机译:含水量对离子聚合物-金属复合材料驱动性能的影响

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This paper presents an experiment on the effects of water content on the actuation performance of ionic polymer-metal composites (IPMCs). Specifically, Nafion 117 sandwiched by platinum electrodes was actuated by AC voltage for 2 h. Because the water molecules in Nafion 117 evaporated into the air, the change of the actuation performance of IMPCs with decreasing water content was investigated. The actuation mechanism of IPMCs under different initial water contents with different applied voltages was also discussed. The largest deformation of IPMCs was obtained under a water content of ~70%. The displacement amplitude of IPMCs required 100-900 s to reach the maximum value under different applied voltages and initial water contents. A linear relation between the peak value of the current and the water content at 3 V_(pp) driving voltage has also been observed.
机译:本文介绍了水含量对离子聚合物-金属复合材料(IPMC)的驱动性能影响的实验。具体地,通过交流电压将夹在铂电极之间的Nafion 117致动2小时。由于Nafion 117中的水分子蒸发到空气中,因此研究了IMPCs随水含量降低的驱动性能的变化。还讨论了不同初始水含量和不同施加电压下IPMC的驱动机理。 IPMC的最大变形是在含水量约为70%时获得的。 IPMC的位移幅度需要100-900 s才能在不同的施加电压和初始含水量下达到最大值。在3 V_(pp)驱动电压下,电流的峰值与水含量之间也存在线性关系。

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