Analytical behavior of rectangular electrostatic torsion actuators with nonlinear spring bending

Zhixiong Xiao, W. Peng, K. Farmer
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引用次数: 11

Abstract

In this paper, we study the pull-in effect for rectangular electrostatic torsion actuators by using analytical calculations that include the higher order effects of nonlinear spring bending. The calculation approach speeds the design of such systems. The method is found to be suitable for actuators with single long beam springs where the ratio of the resonant frequencies for the torsion and bending modes is up to at least 3.5, in the region where bending dominates torsion. After fitting the theory in this paper to Coventor simulation results with three nonphysical coefficients, the fractional differences between Coventor simulation and analytical calculation results are smaller than 6%. The method is also suitable for at least one class of folded spring designs, with greatly decreased bending mode displacement. The main results are also verified by comparing them with published experimental results.
具有非线性弹簧弯曲的矩形静电扭转执行器的解析行为
本文采用包含非线性弹簧弯曲高阶效应的解析计算方法,研究矩形静电扭转致动器的拉入效应。这种计算方法加快了此类系统的设计速度。该方法适用于具有单长梁弹簧的执行器,其中扭转和弯曲模式的谐振频率之比至少为3.5,在弯曲主导扭转的区域。将本文理论与三个非物理系数的covenor模拟结果拟合后,covenor模拟结果与解析计算结果的分数差小于6%。该方法也适用于至少一类弯曲模态位移大大减小的折叠弹簧设计。通过与已发表的实验结果的比较,验证了主要结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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