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Vibration analysis of submerged micro rectangular plates with distributed mass loading

机译:分布质量载荷下浸入水中的矩形矩形板的振动分析

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摘要

This paper investigates the vibration characteristics of the coupling system of a microscale fluid-loaded rectangular isotropic plate attached to a uniformly distributed mass. Previous literature has, respectively, studied the changes in the plate vibration induced by an acoustic field or by the attached mass loading. This paper investigates the issue of involving these two types of loading simultaneously. Based on Lamb's assumption of the fluid-loaded structure and the Rayleigh–Ritz energy method, this paper presents an analytical solution for the natural frequencies and mode shapes of the coupling system. Numerical results for microplates with different types of boundary conditions have also been obtained and compared with experimental and numerical results from previous literature. The theoretical model and novel analytical solution are of particular interest in the design of microplate-based biosensing devices.
机译:本文研究了附着在均匀分布质量上的微尺度矩形矩形各向同性板的耦合系统的振动特性。先前的文献分别研究了由声场或附加的质量载荷引起的板振动的变化。本文研究了同时涉及这两种类型的加载的问题。基于兰姆对流体加载结构的假设和瑞利-里兹能量法,本文为耦合系统的固有频率和振型提供了一种解析解。还获得了具有不同边界条件类型的微孔板的数值结果,并将其与先前文献的实验和数值结果进行了比较。理论模型和新颖的分析解决方案在基于微孔板的生物传感设备的设计中特别受关注。

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