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微梁諧振器中的空氣阻尼

Air damping in micro-beam resonators

  • 摘要: 為了研究空氣阻尼對諧振器工作性能的影響,基于Euler-Bernoulli假設、梁彎曲振動理論和氣體阻尼理論,建立了考慮氣體阻尼的梁振動方程,結合邊界條件對方程進行了求解,得到了兩種不同情況下氣體阻尼對微梁諧振器的諧振頻率和品質因子的影響.通過兩種阻尼對諧振器影響的比較分析,指出在梁形狀保持不變(長寬比和高寬比不變)情況下,微梁諧振器存在一個臨界壓膜厚度,此臨界厚度可為器件的設計提供參考.

     

    Abstract: To research the effect of air damping on resonators, based on the Euler-Bernoulli assumption, beam vibration mechanism and air damping theory, a vibration equation was established and its solution was obtained according to corresponding boundary conditions. The air damping influences on the resonant frequency and quality factor of a micro-beam resonator were obtained under two different conditions. By analyzing air damping in two different ways, it is found that a critical squeeze-film thickness exists under the condition that the aspect ratio of the beam is constant, and the obtained expression of critical thickness can give some suggestions to devices designing.

     

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