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Vibrational Analysis Of Electrostatically Actuated Microstructures Considering Nonlinear Effects

机译:考虑非线性效应的静电致动微结构的振动分析

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摘要

The vibrational behavior of electrostatically actuated microstructures subjected to nonlinear squeeze film damping and in-plane forces is investigated. First-Order Shear Deformation Theory is used to model dynamical system by means of finite element method, while finite difference method is applied to solve the nonlinear Reynolds equation of squeeze film damping simultaneously. Vibrational analysis of microplates is performed by solving eigenvalue problem, after validating the model by pull-in phenomenon and transient behavior. In addition, considering nonlinear squeeze film damping and step-input actuations, response frequencies of microplates are calculated. Effect of ambient pressure and in-plane forces on dynamic pull-in phenomenon is also studied. Results for simplified models are verified and are in good agreement with the published literature. This investigation can reveal nonlinear vibrational behavior of microstructures.
机译:研究了受到非线性挤压膜阻尼和面内力作用的静电致动微结构的振动行为。利用一阶剪切变形理论通过有限元方法对动力系统进行建模,同时应用有限差分法同时求解挤压膜阻尼的非线性Reynolds方程。在通过引入现象和瞬态行为验证模型后,通过解决特征值问题对微板进行振动分析。此外,考虑到非线性挤压膜阻尼和阶跃输入致动,计算了微板的响应频率。还研究了环境压力和平面力对动态拉入现象的影响。简化模型的结果得到了验证,并与已发表的文献非常吻合。这项研究可以揭示微结构的非线性振动行为。

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