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Free vibration of a functionally graded annular sector plate integrated with piezoelectric layers

机译:带有压电层的功能梯度环形扇形板的自由振动

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Based on the first order shear deformation theory, free vibration behavior of functionally graded (FG) annular sector plates integrated with piezoelectric layers is investigated. The distribution of electric potential along the thickness direction of piezoelectric layers which is assumed to be a combination of linear and sinusoidal functions, satisfies both open and closed circuit electrical boundary conditions. Through a reformulation of governing equations and harmonic motion assumption, a novel decoupling method is suggested to transform the six second order coupled partial differential equations of motion into two eighth order and fourth order equations. A Fourier series method is then employed to present analytical solutions for free vibration of smart FG annular sector plates with simply supported radial edges and arbitrarily supported circular edges. The results, which can be used as a benchmark and suitable for design purposes, are verified with those reported in the literature. Finally, by presenting extensive ranges of frequencies, the effects of geometric parameters, power law index, FG and piezoelectric materials, electrical and mechanical boundary conditions as well as the piezoelectric layer thickness on vibration response of smart annular sector plates are discussed in detail.
机译:基于一阶剪切变形理论,研究了集成了压电层的功能梯度(FG)环形扇形板的自由振动行为。沿着压电层的厚度方向的电势分布被假定为线性和正弦函数的组合,其满足开路和闭路电边界条件。通过对控制方程和谐波运动假设的重新表述,提出了一种新颖的解耦方法,将六个二阶耦合的运动偏微分方程转换为两个八阶和四阶方程。然后,采用傅里叶级数方法为具有简单支撑的径向边缘和任意支撑的圆形边缘的智能FG环形扇形板的自由振动提供解析解。结果可以用作基准并适合于设计目的,并已用文献中报道的结果进行了验证。最后,通过给出广泛的频率范围,详细讨论了几何参数,幂律指数,FG和压电材料,电气和机械边界条件以及压电层厚度对智能环形扇形板振动响应的影响。

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