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Analysis of fluid-structure interaction for predicting resonant frequencies and quality factors of a microcantilever on a squeeze-film

机译:分析流体-结构相互作用以预测挤压膜上微悬臂梁的共振频率和品质因数

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摘要

The dynamic behavior of a flexible microcantilever vibrating above a substrate such as the cantilever-based structure of a radio frequency microelectromechanical switch is strongly affected by the motion of gas between the microcantilever and the substrate. In this paper, parameter studies to investigate the effects of geometry, material properties of a microcantilever, and ambient pressure on the resonant frequencies and quality factors of the microcantilever are described. A Reynolds-equation-based continuum model is used to derive the gas force reflecting the gas rarefaction effect due to the size effect of MEMS packed at low ambient pressure. The frequency response function of an inertially-excited microcantilever is developed using the mode superposition method. One interaction parameter, including information on geometry, material properties of a microcantilever, and ambient pressure, is defined to investigate the fluidstructure interaction in a microcantilever vibrating on a squeeze-film. The quality factors of the first three bending modes increase with the decreasing interaction parameter. The changing trend of associated resonant frequencies depends on the order of the bending mode.
机译:柔性微悬臂梁在基板上方振动的动态行为,例如射频微机电开关的基于悬臂梁的结构,受到微悬臂梁与基板之间气体运动的强烈影响。在本文中,描述了用于研究几何形状,微悬臂梁的材料特性以及环境压力对微悬臂梁的谐振频率和品质因数的影响的参数研究。基于雷诺方程的连续体模型可用来得出反映气体稀疏效应的气体力,这归因于在低环境压力下封装的MEMS的尺寸效应。利用模式叠加法开发了惯性微悬臂梁的频率响应函数。定义了一个相互作用参数,包括有关几何形状,微悬臂梁的材料特性和环境压力的信息,以研究在挤压膜上振动的微悬臂梁中的流体结构相互作用。前三个弯曲模式的品质因数随交互参数的减小而增加。相关共振频率的变化趋势取决于弯曲模式的顺序。

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