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首页> 外文期刊>International Journal of Mechanical Sciences >A finite element analysis of thermoelastic damping in vented MEMS beam resonators
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A finite element analysis of thermoelastic damping in vented MEMS beam resonators

机译:通风MEMS束谐振器热弹性阻尼的有限元分析。

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摘要

The effect of geometry on thermoelastic damping in micro-beam resonators is evaluated using an eigenvalue formulation and a customized finite element method. The vented clamped-clamped (CC) and clamped-free (CF) beams with square-shaped vents along their centerlines, are both analyzed by the finite element method. The quality factor and the resonant frequency are obtained as functions of various geometrical parameters including the location, number and size of the vents. The numerical results reveal that the addition of vent sections in the clamped end region can significantly increase the quality factor. The maximum improved quality factor as high as 3801 and 2257 times those of the CC and CF solid beams are realized. The methodology presented in this work provides a useful tool in design optimization of micro beam resonators against thermoelastic damping.
机译:使用特征值公式化和定制的有限元方法评估了几何形状对微束谐振器中热弹性阻尼的影响。沿中心线带有方形通风口的通风夹钳(CC)和无夹钳(CF)梁都通过有限元方法进行了分析。根据各种几何参数(包括通风口的位置,数量和大小)获得质量因数和谐振频率。数值结果表明,在夹紧的端部区域中增加排气孔部分可以显着提高品质因数。实现了CC和CF实心光束的最大改进品质因数,分别高达3801和2257倍。这项工作中介绍的方法为抗热弹性阻尼的微束谐振器的设计优化提供了有用的工具。

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