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Nonlinear vibration analysis of piezo-thermo-electrically actuated functionally graded circular plates

机译:压电热电功能梯度板的非线性振动分析

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摘要

A theoretical model for geometrically nonlinear vibration analysis of thermo-piezoelectrically actuated circular plates made of functionally grade material (FGM) is presented based on Kirchhoff's-Love hypothesis with von-Karman type geometrical large nonlinear deformations. The material properties of the FG core plate are assumed to be graded in the thickness direction according to the power-law distribution in terms of the volume fractions of the constituents. Dynamic equations and boundary conditions including thermal, elastic and piezoelectric couplings are formulated and solutions are derived. An exact series expansion method combined with perturbation approach is used to model the nonlinear thermo-electro-mechanical vibration behavior of the structure. Control of the FG plate's nonlinear deflections and natural frequencies using high control voltages is studied and their nonlinear effects are evaluated. Numerical results for FG plates with various mixtures of ceramic and metal are presented in dimensionless forms. A parametric study is also undertaken to highlight the effects of the thermal environment, applied actuator voltage and material composition of the FG core plate on the nonlinear vibration characteristics of the composite structure.
机译:基于Kirchhoff's-Love假设,结合von-Karman型几何大非线性变形,提出了功能梯度材料(FGM)制成的热压电致动圆板的几何非线性振动分析的理论模型。假设根据成分的体积分数,根据幂律分布在FG芯板的材料特性沿厚度方向分级。建立了包括热,弹性和压电耦合在内的动力学方程和边界条件,并得出了解决方案。采用精确的级数展开法与摄动法相结合,对结构的非线性热电机械振动行为进行建模。研究了使用高控制电压控制FG板的非线性挠度和固有频率,并评估了它们的非线性影响。以无量纲形式显示了具有各种陶瓷和金属混合物的FG板的数值结果。还进行了参数研究,以突出热环境,施加的致动器电压和FG芯板的材料成分对复合结构非线性振动特性的影响。

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