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Simulation of relation between electrode thickness and spring characteristic of a new stacked-type electrostatic actuator

机译:新型堆叠式静电执行器电极厚度与弹簧特性关系的仿真

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In this paper, the simulation result concerning the relation between the electrode thickness and the spring characteristic of a new stacked-type electrostatic actuator has been described. This actuator is constructed by alternately folding two insulated thin metal films, and the electrode parts are thickened to make easily not to expand when the load is applied to this actuator. In a numerical simulation, three-dimensional nonlinear structural analysis including the contact problem has been studied using the finite element method. In the result, it has been understood that the expansion of the actuator is in inverse proportion to about the second power of the electrode thickness. However, when the lengths of the hinge parts are long, the actuator becomes to expand easily even if the electrode parts are thick.
机译:在本文中,已经描述了关于新型堆叠式静电致动器的电极厚度和弹簧特性之间关系的模拟结果。该致动器是通过交替折叠两个绝缘的薄金属膜而构成的,并且电极部分被加厚,以使得在对该致动器施加负载时不易膨胀。在数值模拟中,已使用有限元方法研究了包括接触问题在内的三维非线性结构分析。结果,已经理解致动器的膨胀与电极厚度的大约二次方成反比。但是,当铰链部的长度较长时,即使电极部较厚,致动器也容易膨胀。

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