Finite Element Model for Investigating the Thermo-Electro-Mechanical Response of Inhomogeneously Deforming Dielectric Elastomer Actuators

A. Sharma, Aman Khurana, M. Joglekar
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引用次数: 13

Abstract

Among the available soft active materials, Dielectric elastomers (DEs) possess the capability of achieving the large actuation strain under the application of high electric field. The material behavior of such elastomers is affected significantly by the change in temperature. This paper reports a 3-D finite element framework based on the coupled nonlinear theory of thermo-electro-elasticity for investigating the thermal effects on the electromechanical performance of inhomogeneously deforming dielectric elastomer actuators (DEAs). The material behavior of the actuator is modeled using the neo-Hookean model of hyperelasticity with temperature dependent shear modulus. An in-house computational code is developed to implement the coupled finite element framework. Firstly, the accuracy of the developed FE code is verified by simulating the temperature effects on the actuation response and pull-in instability of the benchmark homogeneously deforming planar DE actuator. Further, the influence of temperature on the electromechanical responses of complex bi-layered bending actuator and buckling pump actuator involving inhomogeneous deformation is investigated. The numerical framework and the associated inferences can find their potential use in addressing the effect of temperature in the design of electro-active polymer based actuators.
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研究非均匀变形介质弹性体执行器机电响应的有限元模型
在现有的软活性材料中,介电弹性体(DEs)具有在高电场作用下实现大致动应变的能力。这种弹性体的材料行为受到温度变化的显著影响。本文报道了一个基于热电弹性耦合非线性理论的三维有限元框架,用于研究热对非均匀变形介质弹性体致动器(DEAs)机电性能的影响。致动器的材料行为使用具有温度相关剪切模量的超弹性的新胡克模型进行建模。开发了一个内部计算代码来实现耦合有限元框架。首先,通过模拟温度对基准均匀变形平面DE致动器的致动响应和引入不稳定性的影响,验证了所开发的有限元程序的准确性。此外,还研究了温度对复杂双层弯曲致动器和非均匀变形屈曲泵致动器机电响应的影响。数值框架和相关推论可以在解决基于电活性聚合物的致动器设计中的温度影响方面找到它们的潜在用途。
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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CiteScore
1.70
自引率
8.30%
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0
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