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THEORETICAL MODELING AND EXPERIMENTAL VALIDATION OF FLUID-LOADED MICRO RECTANGULAR PLATES

机译:流体加载的矩形矩形板的理论建模和实验验证

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摘要

This paper presents a theoretical model on the vibration analysis of micro scale fluid-loaded rectangular isotropic plates, based on the Lamb's assumption of fluid-structure interaction and the Rayleigh-Ritz energy method. An analytical solution for this model is proposed, which can be applied to most cases of boundary conditions. The dynamical experimental data of a series of microfabricated silicon plates are obtained using a base-excitation dynamic testing facility. The natural frequencies and mode shapes in the experimental results are in good agreement with the theoretical simulations for the lower order modes. The presented theoretical and experimental investigations on the vibration characteristics of the micro scale plates are of particular interest in the design of microplate based biosensing devices.
机译:本文基于Lamb的流固耦合假设和瑞利-里兹能量法,提出了一种微尺度矩形矩形各向同性板振动分析的理论模型。提出了该模型的解析解,该解析解可应用于大多数边界条件。使用基座激励动态测试设备可获得一系列微细加工的硅板的动态实验数据。实验结果中的固有频率和模态形状与低阶模态的理论模拟非常吻合。在基于微孔板的生物传感装置的设计中,目前对微孔板振动特性的理论研究和实验研究尤为重要。

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