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Coupled Modeling and Simulation of Electro-Elastic Materials at Large Strains

机译:大应变下电弹性材料的耦合建模与仿真

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In the recent years various novel materials have been developed that respond to the application of electrical loading by large strains. An example is the class of so-called electro-active polymers (EAP). Certainly these materials are technologically very interesting, e.g. for the design of actuators in mechatronics or in the area of artificial tissues. This work focuses on the phenomenological modeling of such materials within the setting of continuum-electrodynamics specialized to the case of electro-hyperelastostatics and the corresponding computational setting. Thereby a highly nonlinear coupled problem for the deformation and the electric potential has to be considered. The finite element method is applied to solve the underlying equations numerically and some exemplary applications are presented.
机译:近年来,已经开发出各种新颖的材料,它们响应大应变对电负载的施加。一个例子是一类所谓的电活性聚合物(EAP)。当然,这些材料在技术上非常有趣,例如用于机电一体化或人造组织区域中的执行器设计。这项工作的重点是在专门针对高静电静力学情况的连续电动力学设置和相应的计算设置中,对此类材料进行现象学建模。因此,必须考虑高度非线性的变形和电势耦合问题。应用有限元方法对数值方程进行数值求解,并给出了一些示例性应用。

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