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Nonlinear dynamic characteristics of a dielectric elastomer membrane undergoing in-plane deformation

机译:介电弹性体膜发生面内变形的非线性动力学特性

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This paper proposes a free energy model to study the dynamic characteristics of a dielectric elastomer membrane undergoing in-plane deformation, subject to the combined loads of a mechanical press and an electric field. The natural frequency of the small-amplitude perturbation around the state of equilibrium is calculated with focus on the damping effects and the resonance phenomenon. The numerical results, such as the oscillation, phase diagrams and Poincaré maps, are presented to show the influence of the damping on the nonlinear dynamic characteristics of the dielectric elastomer. The numerical results indicate that pre-stresses, damping effects and applied voltages could tune the natural frequency and modify the dynamic behavior of the dielectric elastomer. There is a stability transition when taking the damping effect into account. The damping effect could cause the dynamic responses to constant vibration and decrease the amplitude. These conclusions may guide the exploration of highperformance dielectric elastomers under dynamic mechanical and electrical loads.
机译:本文提出了一种自由能模型,以研究介电弹性体膜在面内变形情况下的动态特性,该动态特性受机械压力和电场的共同作用。以阻尼效应和共振现象为重点,计算了平衡状态周围的小振幅扰动的固有频率。给出了数值结果,例如振荡,相位图和庞加莱图,以显示阻尼对介电弹性体非线性动力学特性的影响。数值结果表明,预应力,阻尼效应和施加的电压可以调谐固有频率并改变介电弹性体的动态性能。考虑减震效果时会有一个稳定过渡。阻尼效应可能导致对恒定振动的动态响应并降低振幅。这些结论可指导在动态机械和电负载下探索高性能介电弹性体。

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