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Free Vibration Analysis of Functionally Graded Moderately Thick Annular Sector Plates Using Differential Quadrature Method

机译:用差分正交方法自由振动分析功能渐变的中等厚环形扇形板

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In this paper, the free vibration of moderately thick annular sector plates made of functionally graded materials is studied using the Differential Quadrature Method (DQM). The material properties of the functionally graded plate are assumed to vary continuously through the thickness, according to a power-law distribution. The governing differential equations of motion are derived based on the First order Shear Deformation plate Theory (FSDT) and then solved numerically using DQM under different boundary conditions. The results for the isotropic plates which are derivable with this approach are presented and compared with the literature and they are in good agreement. The natural frequencies of the functionally graded moderately thick annular sector plates under various combinations of clamped, simple supported and free boundary conditions are presented for the first time. The effects of boundary conditions, sector angle, radius ratio, thickness to outer radius ratio, volume fraction exponent and variation of the Poisson's ratio on the free vibration behavior of the plate are studied
机译:本文使用差分正交方法(DQM)研究了由功能梯度材料制成的中等厚环形扇形板的自由振动。根据动力法分布,假设功能梯板的材料特性通过厚度连续变化。基于第一阶剪切变形板理论(FSDT)导出运动的控制微分方程,然后在不同的边界条件下使用DQM进行数值求解。呈现出这种方法的各向同性板的结果,并与文献进行比较,它们非常一致。首次介绍了在各种夹紧,简单的支撑和自由边界条件下的各种组合的功能梯度厚的环形扇形板的自然频率。研究了边界条件,扇区角度,半径比,外半径比,体积分数指数和泊松比的自由振动行为的变化的影响

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