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Voltage-controlled radial wrinkles of a trumpet-like dielectric elastomer structure

机译:喇叭状介电弹性体结构的电压控制径向皱折

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摘要

Wrinkle is usually considered as one failure mode of membrane structure. However, it can also be harnessed in developing smart devices such as dry adhesion tape, diffraction grating, smart window, etc. In this paper, we present a method to generate voltage-controlled radial wrinkles, which are fast response and reversible, in a stretched circular dielectric elastomer (DE) membrane with boundary fixed. In the experiment, we bond a circular plate on the center of the circular membrane and then pull the DE membrane perpendicular to itself via the plate. The stretched DE membrane is a trumpet-like structure. When the stretched DE membrane is subjected to a certain voltage, wrinkles nucleate from the center of the DE membrane and propagate to the boundary as the voltage increases. We adopt a theoretical framework to analyze the nucleation of the wrinkles. A simple wavelength expression is achieved, which is only related to the geometry and the stretch of the DE membrane. Results show that the theory agrees well with the experiment. This work may help the future design of DE actuators in avoiding mechanical instability and provide a new method to generate controllable radial DE wrinkles.
机译:皱纹通常被认为膜结构的一个故障模式。然而,它也可以在显影智能设备,例如干粘合带,衍射光栅,智能窗口,等等在本文中利用,我们提出以生成电压控制放射状皱纹,这是快速响应和可逆的,在所涉及的方法拉伸圆形介电弹性体(DE)膜与边界固定。在实验中,我们在圆形膜的中央接合的圆板,然后将DE膜垂直经由板拉向自身。拉伸DE膜为喇叭状的结构。当拉伸的DE膜进行一定的电压,皱纹从DE膜和繁殖的中心到边界随着电压升高成核。我们采用了一个理论框架来分析皱纹的核。一个简单的波长表达实现,其中仅与几何形状和DE膜的拉伸。结果表明,理论与实验吻合。这项工作可能有助于DE致动器的未来设计避免机械不稳定性,并提供以产生可控径向DE皱纹的新方法。

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