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Free vibration analysis of moderately thick functionally graded plates by local Kriging meshless method

机译:局部Kriging无网格法分析中等厚度功能梯度板的自由振动

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This paper mainly Presents free vibration analyses of metal and ceramic functionally graded plates with the local Kriging meshless method. The Kriging technique is employed to construct shape functions which possess Kronecker delta function property and thus make it easy to implement essential boundary conditions. The eigenvalue equations of free vibration problems are based on the first-order shear deformation theory and the local Petrov-Galerkin formulation. The cubic spline function is used as the weight function which vanishes on internal boundaries of local quadrature domains and hence simplifies the implementation. Convergence studies are conducted to examine the stability of the present method. Three types of functionally graded plates - square, skew and quadrilateral plates - are considered as numerical examples to demonstrate the versatility of the present method for free vibration analyses.
机译:本文主要介绍了采用局部Kriging无网格法对金属和陶瓷功能梯度板的自由振动分析。克里格技术被用来构造具有Kroneckerδ函数性质的形状函数,从而使实现基本边界条件变得容易。自由振动问题的特征值方程基于一阶剪切变形理论和局部Petrov-Galerkin公式。三次样条函数用作权函数,它在局部正交域的内部边界上消失,因此简化了实现。进行收敛性研究以检验本方法的稳定性。三种类型的功能梯度板-正方形,倾斜和四边形板-被视为数值示例,以证明本方法用于自由振动分析的多功能性。

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