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Suppression of electromechanical instability in fiber-reinforced dielectric elastomers

机译:抑制纤维增强介电弹性体中的机电不稳定性

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The electromechanical instability of dielectric elastomers has been a major challenge for the application of this class of active materials. In this work, we demonstrate that dielectric elastomers filled with soft fiber can suppress the electromechanical instability and achieve large deformation. Specifically, we developed a constitutive model to describe the dielectric and mechanical behaviors of fiber-reinforced elastomers. The model was applied to study the influence of stiffness, nonlinearity properties and the distribution of fiber on the instability of dielectric membrane under an electric field. The results show that there exists an optimal fiber distribution condition to achieve the maximum deformation before failure.
机译:介电弹性体的机电不稳定性一直是这类活性材料应用的主要挑战。在这项工作中,我们证明了填充软纤维的介电弹性体可以抑制机电不稳定并实现大变形。具体来说,我们开发了一个本构模型来描述纤维增强弹性体的介电和机械性能。该模型用于研究刚度,非线性和纤维分布对电场作用下介电膜不稳定性的影响。结果表明,存在一个最佳的纤维分布条件,以实现破坏前的最大变形。

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