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Free vibration analysis of thin arbitrarily laminated anisotropic plates using boundary-continuous displacement Fourier approach

机译:边界连续位移傅里叶法分析任意薄层各向异性板的自由振动

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摘要

A boundary continuous displacement based Fourier series solution to the boundary--value problem of free vibration of an ar- bitrarily laminated thin rectangular plate is presented. This powerful approach is employed to solve a system of three highly coupled partial differential equations arising from the Kirchhoff hypothesis as applied to an anisotropic laminate, with the SS2-type simply supported boundary conditions prescribed at all four edges. The accuracy of the computed eigenvalues (natural frequencies) is ascertained by studying the convergence characteristics of the lowest seven natural frequencies, and also by comparison with the computed degenerate FEM (finite element methods) results. Other important numerical results presented include variation of the response quantities of interest with geometric and material parameters, such as fiber orientation angle and longitudinal-to-transverse modulus ratio.
机译:提出了一种基于边界连续位移的傅立叶级数解,用于求解任意层压的矩形薄板的自由振动的边值问题。这种有力的方法被用来解决一个系统,该系统由应用于各向异性叠层的Kirchhoff假设产生的三个高度耦合的偏微分方程组,在所有四个边均规定了SS2型简单支撑的边界条件。通过研究最低的七个自然频率的收敛特性,并与计算的退化FEM(有限元方法)结果进行比较,可以确定计算出的特征值(固有频率)的准确性。提出的其他重要数值结果包括感兴趣的响应量随几何和材料参数的变化,例如纤维取向角和纵向与横向模量比。

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