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Pull-in Instability of Micro-switch Actuators: Model Review

机译:微动开关执行器的不稳定性:模型综述

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摘要

The existing three widely used pull-in theoretical models (i.e., one-dimensional lumped model, linear supposition model and planar model) are compared with the nonlinear beam mode in this paper by considering both cantilever and fixed-fixed type micro and nano-switches. It is found that the error of the pull-in parameters between one-dimensional lumped model and the nonlinear beam model is large because the denominator of the electrostatic force is minimal when the electrostatic force is computed at the maximum deflection along the beam. Since both the linear superposition model and the slender planar model consider the variation of electrostatic force with the beam's deflection, these two models not only are of the same type but also own little error of the pull-in parameters with the nonlinear beam model, the error brought by these two models attributes to that the boundary conditions are not completely satisfied when computing the numerical integration of the deflection.
机译:通过考虑悬臂式和固定固定式微型和纳米开关,将现有的三种广泛使用的引入理论模型(即一维集总模型,线性假设模型和平面模型)与非线性束模式进行了比较。 。可以发现,一维集总模型与非线性梁模型之间的引入参数误差较大,因为在沿梁的最大挠度计算静电力时,静电力的分母最小。由于线性叠加模型和细长平面模型都考虑了静电力随电子束偏转的变化,因此这两个模型不仅是同一类型,而且非线性电子束模型的引入参数误差也很小。这两个模型带来的误差归因于在计算挠度的数值积分时不能完全满足边界条件。

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