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Analysis on the energy harvesting cycle of dielectric elastomer generators for performance improvement

机译:分析介电弹性体发电机的能量收集周期以提高性能

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摘要

With attractive features like high energy density and flexibility, dielectric elastomer generators (DEGs) have been designed to harvest mechanical energy from diverse sources. However, their energy harvesting performance could be limited by the material viscoelasticity and various failure modes. Adopting the finite-deformation viscoelasticity model, this work presents a theoretical framework for analyzing the performance of a DEG with a "triangular" harvesting scheme. Simulation results reveal that choosing an appropriate in-plane stretch ratio for the onset of the discharging process can raise the harvested energy of DEGs. It is also found that the energy conversion efficiency of a DEG can be markedly improved by avoiding loss-of-tension of elastomer during the operation of energy harvesting. Copyright (C) EPLA, 2016
机译:介电弹性体发生器(DEG)具有高能量密度和柔韧性等吸引人的特性,旨在从各种来源中收集机械能。但是,它们的能量收集性能可能会受到材料粘弹性和各种破坏模式的限制。通过采用有限变形粘弹性模型,这项工作为使用“三角形”收集方案分析DEG的性能提供了一个理论框架。仿真结果表明,为放电过程的开始选择合适的面内拉伸比可以提高DEG的收集能量。还发现,通过在能量收集操作期间避免弹性体的张力损失,可以显着提高DEG的能量转换效率。版权(C)EPLA,2016年

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