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A New Free Molecular Model for Squeeze-Film Damping of Flexible Microbeam in Low Vacuum

机译:低真空下柔性微束挤压膜阻尼的新自由分子模型

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摘要

Predicting air damping is crucial in the design of high Q microelectromechanical systems. In the past, squeeze-film damping in low vacuum is usually estimated using the free molecular model proposed by Bao (J.Micromech.Microeng, 2002,12: 341-346). However, the Bao's model neglected the deflection of the plate; thus the model is only suitable for rigid plate. This paper presents a new free molecular model to describe squeeze-film damping of flexible microbeam in low vacuum. An energy-transfer model is used to study the effect of a moving microbeam on changing the kinetic energy of the gas molecules. Compared with the previous models, the present model accounts for the flexibility of microbeam based on using the modal analysis techniques. The accuracy of the present model is verified by comparing its results with the experimental results available in the literature.
机译:预测空气阻尼对高Q微机电系统的设计至关重要。过去,通常使用Bao(J.Micromech.Microeng,2002,12:341-346)提出的自由分子模型来估算低真空中的挤压膜阻尼。但是,鲍氏模型忽略了板的挠度。因此该模型仅适用于刚性板。本文提出了一个新的自由分子模型来描述低真空下柔性微束的挤压膜阻尼。能量转移模型用于研究移动微束对改变气体分子动能的影响。与以前的模型相比,本模型基于模态分析技术,说明了微束的灵活性。通过将其结果与文献中提供的实验结果进行比较,可以验证本模型的准确性。

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