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Ionic polymer-metal composite as energy harvesters

机译:离子聚合物-金属复合材料作为能量收集器

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摘要

The ability of an electroactive polymer, IPMC (Ionic Polymer Metal Composites,) to produce electric charge under mechanical deformations may be exploited for the development of next generation of energy harvesters. Two different electrode types (gold and platinum) were employed for the experiments. The sample was tested under dynamic conditions, produced through programmed shaking. In order to evaluate the potential of IPMC for dry condition, these samples were treated with ionic liquid. Three modes of mechanical deformations (bending, tension and shear) were analyzed. Experimental results clearly indicate that IPMCs are attractive applicants for energy harvesting, with inherent advantages like flexibility, low cost, negligible maintenance and virtually infinite longevity. Besides, preliminary energy harvesting model of IPMC has been formulated based upon the work of previous investigators (Newbury 2002, Newbury and Leo 2002, Lee, et al. 2005, Konyo, et al. 2004) and the simulation results reciprocate experimental results within acceptable error.
机译:电活性聚合物IPMC(离子聚合物金属复合材料)在机械变形下产生电荷的能力可用于开发下一代能量收集器。实验使用了两种不同的电极类型(金和铂)。在动态条件下测试样品,该条件是通过程序摇动产生的。为了评估IPMC在干燥条件下的潜力,将这些样品用离子液体处理。分析了三种机械变形模式(弯曲,拉伸和剪切)。实验结果清楚地表明,IPMC是能量收集的有吸引力的申请者,具有固有的优势,例如灵活性,低成本,可忽略的维护以及实际上无限的使用寿命。此外,IPMC的初步能量收集模型是在先前研究人员的工作(Newbury 2002,Newbury和Leo 2002,Lee等,2005,Konyo等,2004)的基础上建立的,模拟结果在可接受的范围内使实验结果相吻合。错误。

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