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Temperature effect on the performance of a dissipative dielectric elastomer generator with failure modes

机译:温度对具有失效模式的耗散型介电弹性体发电机性能的影响

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摘要

Research on dielectric elastomer generators (DEGs) which can be utilized to convert mechanical energy to electrical energy has gained wide attention lately. However, very few works account for the operating temperature, viscoelasticity and current leakage in the analysis of DEGs simultaneously. In this study, under several compound four-stroke conversion cycles, the electromechanical performance and energy conversion of a dissipative DEG made of a very-high-bond (VHB) elastomer are investigated at different operating temperatures. The performance parameters such as energy density and conversion efficiency are calculated under different temperatures. Moreover, the common failure modes of the generator are considered: material rupture, loss of tension, electrical breakdown and electromechanical instability. The numerical results have distinctly shown that the operating temperature plays an important role in the performance of DEGs, which could possibly make a larger conversion efficiency for the DEG.
机译:可用于将机械能转换为电能的介电弹性体发电机(DEG)的研究近来引起了广泛关注。但是,很少有工作能够同时分析DEG时的工作温度,粘弹性和电流泄漏。在这项研究中,在几个复合的四冲程转换循环下,研究了在不同工作温度下由超高键合(VHB)弹性体制成的耗散DEG的机电性能和能量转换。在不同温度下计算性能参数,例如能量密度和转化效率。此外,还要考虑发电机的常见故障模式:材料破裂,张力损失,电击穿和机电不稳定性。数值结果清楚地表明,工作温度在DEG的性能中起着重要作用,这可能会使DEG的转化效率更高。

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