Experimental Study on the Variation of Dielectric Constant of Dielectric Elastomer Actuator

Zezhou Li, H. Lau, Xiaoyu Chen, Jiao Wang, Shen Shen, P. Sun
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引用次数: 5

Abstract

The dielectric constant of dielectric elastomer(DE) is an important physical parameter that affects the performance of DE actuator. A number of factors may cause an effect on the value of the dielectric constant. In this paper, an extensive experimental study has been conducted to investigate the relation between dielectric constant and two factors, electrical frequency and biaxial prestretch ratio quantitatively. The experimental results show that the dielectric constant varies with the variation of the frequency of the sensing signal and prestretch ratio. The analyses and the recorded results provide a reference to researchers about the quantitative control of dielectric elastomer actuator relating to the two key parameters. An experimental platform has been developed for actuating and sensing of a prototype dielectric elastomer actuator that demonstrates the design for actuating and self-sensing control under varying dielectric constant. An area stretch ratio of more than 220% is obtained through the proposed design.
介电弹性体作动器介电常数变化的实验研究
介电弹性体的介电常数是影响介电弹性体作动器性能的重要物理参数。许多因素可能对介电常数的值产生影响。本文进行了大量的实验研究,定量地探讨了介电常数与电频率和双轴预拉伸比两个因素的关系。实验结果表明,介质常数随传感信号频率和预拉伸比的变化而变化。分析结果和记录结果可为介电弹性体作动器的两个关键参数的定量控制提供参考。建立了介电弹性体作动器原型的驱动与传感实验平台,演示了变介电常数下的驱动与自传感控制设计。通过提出的设计,获得了超过220%的面积拉伸比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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