首页> 外文会议>Proceedings of the ASME international design engineering technical conferences and computers and information in engineering conference 2018 >EFFECTS OF SQUEEZE FILM AND INITIAL DEFLECTION ON THE RESONANCE FREQUENCIES AND MODAL DAMPING OF CIRCULAR MICROPLATES
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EFFECTS OF SQUEEZE FILM AND INITIAL DEFLECTION ON THE RESONANCE FREQUENCIES AND MODAL DAMPING OF CIRCULAR MICROPLATES

机译:挤压膜和初始挠度对圆形微板共振频率和模态阻尼的影响

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摘要

We investigate the effects of squeeze air film and initial deflection on the resonance frequencies and modal damping of ca-pacitive circular microplates. The equation of motion of a circular microplate, which are derived from the von kdrmdn plate theory, coupled with the Reynolds equation are discretized using the Differential Quadrature Method (DQM). The eigenvalues and eigenvectors of the multiphysical problem are determined by perturbing the system of equations around a static solution. Therefore, the resonance frequencies, modal damping coefficients and mode shapes of the plate and the fluid can be determined. The advantage of using DQM is that the solution of the system can be obtained with only few grid points. The obtained numerical results are compared with the experimental data for the case of a capacitive circular microplates with an initial deflection. The increase of the static pressure leads to a shift in the resonance frequencies due to the increase in the stiffness of the plate. Also the initial deflection change the resonance frequencies due to the change in the effective gap distance. The developed model is an effective tool to predict the dynamic behavior of a microsystem under the effect of air film and with initial deflection.
机译:我们研究了压缩空气膜和初始挠度对电容性圆形微板的共振频率和模态阻尼的影响。使用微分求积法(DQM)离散圆盘微孔板的运动方程,该方程由von kdrmdn板理论派生,并与雷诺方程耦合。通过扰动静态解周围的方程组来确定多物理问题的特征值和特征向量。因此,可以确定板和流体的共振频率,模态阻尼系数和模态形状。使用DQM的优点是仅需很少的网格点即可获得系统的解决方案。将获得的数值结果与具有初始挠度的电容式圆形微孔板的实验数据进行比较。静压的增加由于板的刚度的增加而导致共振频率的偏移。同样,由于有效间隙距离的变化,初始偏转也会改变共振频率。开发的模型是预测微系统在气膜作用下并具有初始挠度的动态行为的有效工具。

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