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An investigation of the damping effects of various gas environments on a vibratory MEMS device

机译:研究各种气体环境对振动MEMS器件的阻尼效应

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摘要

An experimental investigation of the damping effects in several different gas chemistries on a vibrating micromachined structure was conducted. A corresponding numerical study using an analytical model was also performed and the results correlated with the experimental observations. The analytical model is based on the compressible Reynolds equation. The theoretical and experimental quality factor show reasonable agreement for different gases. As expected, the quality factor decreases as the gas pressure increases. Both experiments and numerical predictions suggest that these various gases may not affect the mechanical behavior significantly, and could be used for their unique electrical properties, such as permittivities.
机译:对振动微机械结构在几种不同气体化学中的阻尼作用进行了实验研究。还使用分析模型进行了相应的数值研究,其结果与实验观察结果相关。分析模型基于可压缩的雷诺方程。理论和实验品质因数对不同的气体显示出合理的一致性。如预期的那样,品质因数随着气压的增加而降低。实验和数值预测均表明,这些各种气体可能不会显着影响机械性能,并且可用于其独特的电性能,例如介电常数。

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