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Nonlinear stability analysis of rotational dynamics and transversal vibrations of annular circular thin plates functionally graded in radial direction by differential quadrature

机译:径向积分微分求积法对环形圆形薄板旋转动力学和横向振动的非线性稳定性分析

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摘要

In this article, the nonlinear analysis of free vibrations, dynamic stability, and rotational dynamics of rotating annular circular thin plates, made of functionally graded material (FGM), is studied. Based on classical plate theory, von Karman's nonlinear plate theory, and assuming the FGM mechanical properties vary in the radial direction, the governing equations of motion are obtained by direct use of Newton's laws. A 1-D differential quadrature is used to solve the governing equations determining the natural frequencies, corresponding transverse mode shapes, and the critical speeds of rotation. The accuracy and convergence of the method are studied by comparing the results with the similar results whenever available in the literature. The influence of different parameters such as inner-to-outer radii ratio, thickness-to-outer radius ratio, graded index, angular velocity of the plate, and different boundary conditions on the natural frequencies of FG rotating plate are demonstrated by numerical examples. It is shown that fabricating a rotating disk with FGM can lead to an increase in its critical speed.
机译:本文研究了由功能梯度材料(FGM)制成的旋转环形圆形薄板的自由振动,动态稳定性和旋转动力学的非线性分析。基于经典板理论,冯·卡曼的非线性板理论,并假设FGM的力学性能沿径向变化,可直接使用牛顿定律获得运动的控制方程。一维差分正交用于求解确定自然频率,相应的横向模式形状和临界旋转速度的控制方程式。通过将结果与文献中可用的相似结果进行比较,研究了该方法的准确性和收敛性。通过数值算例说明了内外半径比,厚度外半径比,梯度指数,板的角速度以及不同的边界条件等不同参数对FG旋转板固有频率的影响。结果表明,用FGM制造旋转盘可导致其临界速度提高。

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