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A new Chebyshev spectral approach for vibration of in-plane functionally graded Mindlin plates with variable thickness

机译:一种新的契比雪夫谱方法,用于振动可变厚度的平面内功能梯度Mindlin板

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This paper presents a new and simple approach for vibration analysis of in-plane functionally graded (IPFG) plates with variable thickness based on the Chebyshev spectral method. Both the material properties and the thickness which vary in the plane of the plate are approximated by high-order Chebyshev expansions. Gauss-Lobatto sampling is adopted for spatial discretization. A consistent governing equation in discrete form is derived by utilizing Lagrange's equation for all kinds of IPFG plates whose material property functions and thickness function are square-integrable and infinitely differentiable in the domain. Its mass matrix is diagonal and stiffness matrix is symmetric. Classical and point-supported boundary conditions are incorporated through projection matrices. This approach is independent of the type of material gradation, meshfree, and flexible to adjust the computation cost and precision according to needs. A series of numerical examples involving different kinds of material gradations, thickness variations, and boundary conditions are carried out to demonstrate the validity of the proposed method. The results obtained from the present method show a good convergence and agree with those in literature very well. (C) 2019 Elsevier Inc. All rights reserved.
机译:本文提出了一种基于Chebyshev谱方法的可变厚度平面内功能梯度(IPFG)板振动分析的新方法。在平板平面上变化的材料特性和厚度都可以通过高次切比雪夫展开来近似。高斯-洛巴托采样用于空间离散化。利用拉格朗日方程,可以对材料性能函数和厚度函数在平方范围内可平方且可微分的所有IPFG平板,得出离散形式的一致控制方程。它的质量矩阵是对角线,刚度矩阵是对称的。经典的和点支持的边界条件通过投影矩阵合并。此方法与材料渐变类型无关,无网格且可根据需要灵活调整计算成本和精度。进行了一系列涉及不同种类的材料梯度,厚度变化和边界条件的数值示例,以证明该方法的有效性。从本方法获得的结果显示出很好的收敛性,并且与文献中的结果非常吻合。 (C)2019 Elsevier Inc.保留所有权利。

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