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Size-dependent hydroelastic vibration of FG microplates partially in contact with a fluid

机译:尺寸依赖性水力弹性振动部分与流体接触

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摘要

This work focuses on the hydroelastic vibration of vertical functionally graded (FG) microplates partially in contact with a fluid. The nonlocal Lam strain gradient theory is here proposed to include small-scale effects, with the introduction of three higher-order material constants within the formulation. This non-classical model would revert to the modified couple stress theory (MCST) or the classical continuum model (CCM) for a vanishing value of two or three length scale parameters, respectively. A fifth-order shear deformation theory is employed to capture the transverse shear stresses and rotary inertia effects. An ideal fluid is also assumed to simplify the dynamic problem, where the continuity equation is enforced to determine the fluid velocity potential associated with bulging and sloshing modes. Once the kinetic and potential energy are calculated for the both of structure and interacting fluid, the Rayleigh-Ritz method is employed to determine the wet frequencies of the system. After a preliminary validation of the proposed model, a systematic investigation is performed to check effects of different mechanical and/or geometrical parameters on the vibrational characteristics of the microplate, namely, the small-scale parameters, the aspect ratio, the thickness ratio and the fluid dimensions contacting with the microstructure.
机译:这项工作侧重于垂直功能梯度(FG)微孔板的液体弹性振动,部分地与流体接触。这里提出了非本体林应变梯度理论,包括在制剂中引入三种高阶材料常数的小规模效应。这种非经典模型将分别恢复到修改的耦合应力理论(MCST)或经典连续模型(CCM),分别用于两种或三个长度比例参数的消失值。采用第五阶剪切变形理论捕获横向剪切应力和旋转惯性效应。还假设一种理想的流体来简化动态问题,其中执行连续性方程以确定与凸出和晃动模式相关的流体速度电位。一旦计算了动力学和势能对于两个结构和相互作用流体,就采用瑞利-RITZ方法来确定系统的湿频率。在提出模型的初步验证之后,进行系统调查,以检查不同机械和/或几何参数对微孔板的振动特性的影响,即小规模参数,纵横比,厚度比和流体尺寸与微观结构接触。

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