弹性体
材料科学
执行机构
变硬
变形(气象学)
管(容器)
电介质
复合材料
介电弹性体
电压
电场
机械
不稳定性
物理
工程类
电气工程
光电子学
量子力学
作者
Jian Zhu,Hristiyan Stoyanov,Guggi Kofod,Zhigang Suo
摘要
This paper theoretically analyzes a dielectric elastomer tube actuator (DETA). Subject to a voltage difference between the inner and outer surfaces, the actuator reduces in thickness and expands in length, so that the same voltage will induce an even higher electric field. This positive feedback may cause the actuator to thin down drastically, resulting in electrical breakdown. We obtain an analytical solution of the actuator undergoing finite deformation when the elastomer obeys the neo-Hookean model. The critical strain of actuation is calculated in terms of various parameters of design. We also discuss the effect of the strain-stiffening on electromechanical behavior of DETAs by using the model of freely joined links.
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