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Design and FEM analysis of a new and simple electro-thermal actuated microgripper

机译:一种新型和简单的电热驱动微臂的设计和有限元分析

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In this paper, the dynamic and electric analysis of a novel electrostatically actuated microdevice is presented. This device consist of an arrangement of four parallel microcantilevers, which is fed with 1 V. The analysis was carried out by Finite Element Method (FEM) in Ansys Workbench in order to obtain: current intensity, temperature distribution, Joule effect, structural deformation, natural frequency, and reaction force, which characterize the microgripper performance. The material used in the analysis was Silicon. A thermoelastic model, that describes the behavior mechanical of the device, is developed. The device had an initial gap of 28 μm and a final gap of ~ 4 μm, the force of subjection in grippers is 0.4 μN.
机译:本文介绍了一种新型静电致动微探测的动态和电气分析。该装置包括四个平行的微静电器的布置,该装置用1V供给。通过Ansys工作台中的有限元方法(FEM)进行分析,以获得:电流强度,温度分布,焦耳效应,结构变形,固有频率和反作用力,其表征了微型电动性能。分析中使用的材料是硅。开发了一种热弹性模型,其描述了装置的行为机械。该装置具有28μm的初始间隙和〜4μm的最终间隙,夹持器中的强制力为0.4μN。

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