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The effect of fluid surface waves on free vibration of functionally graded microplates in interaction with bounded fluid

机译:流体表面波对与梯度流体相互作用的功能梯度微孔板自由振动的影响

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In this paper, the modified couple stress theory (MCST) is applied to study the effect of fluid surface waves on free vibration of a functionally graded (FG) microplate in interaction with bounded fluid. The bounded fluid is considered inviscid, irrotational, and incompressible. The fluid velocity potential which satisfies the boundary and compatibility conditions is applied to model the effect of bounded fluid. Assuming that the gradient of material properties varies through the thickness, the classical plate theory has been employed to obtain the frequency equations of the FG microplate; these equations are solved by Rayleigh-Ritz method to determine the natural frequencies. The frequencies are extracted for FG plates, homogeneous microplates, and FG microplates in vacuum and in interaction with bounded fluid. Where the microplate has been in interaction with bounded fluid, influences of microplate bulging and fluid sloshing are captured both simultaneously and separately. Effects of plate dimensions, fluid tank, fluid type, power law index, and length scale parameter on natural frequencies of the system are presented and discussed in details for various boundary conditions. Results show that fluid surface waves significantly affect the natural frequencies of high flexible microplates.
机译:在本文中,应用修正偶应力理论(MCST)研究流体表面波对功能梯度(FG)微孔板与受限流体相互作用的自由振动的影响。有界流体被认为是不粘稠的,不可旋转的和不可压缩的。满足边界和相容性条件的流体速度势被用来模拟约束流体的效果。假设材料特性的梯度随厚度变化,则采用经典的板理论来获得FG微板的频率方程。通过Rayleigh-Ritz方法求解这些方程,以确定固有频率。提取频率为FG板,均质微板和FG板在真空中并与有限流体相互作用的频率。在微孔板已经与有限的流体相互作用的情况下,微孔板鼓胀和流体晃动的影响被同时或分开地捕获。呈现并讨论了板边界尺寸,流体箱,流体类型,幂律指数和长度比例参数对系统固有频率的影响。结果表明,流体表面波会显着影响高柔性微孔板的固有频率。

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