首页> 外文期刊>Journal of intelligent material systems and structures >3D Finite Element Analyses of Multilayer Dielectric Elastomer Actuators with Metallic Compliant Electrodes for Space Applications
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3D Finite Element Analyses of Multilayer Dielectric Elastomer Actuators with Metallic Compliant Electrodes for Space Applications

机译:航天用金属柔性电极多层介电弹性体执行器的3D有限元分析

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摘要

A special actuator device with passive sensing capability based on dielectric elastomer was studied and specialized to be used in space applications. The work illustrates the research project modeling procedure adopted to simulate the mechanical behavior of this material based on a finite-element theory approach. The Mooney-Rivlin's hyperelastic and Maxwell's electrostatic models provide the theoretical basis to describe its electromechanic behavior. The validation of the procedure is performed through a numerical-experimental correlation between the response of a prototype of actuator developed by the Ris? Danish research center and the 3D finite-element model simulations. An investigation concerning a possible application in the space environment of dielectric elastomer actuators is also presented.
机译:研究了一种基于介电弹性体的具有被动感应功能的特殊执行器设备,并专门用于太空应用。这项工作说明了基于有限元理论方法模拟该材料的力学行为而采用的研究项目建模程序。 Mooney-Rivlin的超弹性模型和Maxwell的静电模型为描述其机电行为提供了理论基础。通过Ris?开发的执行器原型的响应之间的数值实验相关性来执行该过程的验证。丹麦研究中心和3D有限元模型仿真。还介绍了有关介电弹性体致动器在空间环境中可能应用的研究。

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