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Dynamic stiffness analysis for free vibrations of axially loaded laminated composite beams

机译:轴向荷载下叠合梁自由振动的动力刚度分析

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摘要

The free vibration and buckling behaviors of axially loaded laminated composite beams having arbitrary lay-up are investigated by using the dynamic stiffness method. The influences of axial force, Poisson effect, axial deformation, shear deformation and rotary inertia are taken into account in the formulation. The exact dynamic stiffness matrix is developed by directly solving the governing differential equations of axially loaded laminated beam in free vibration. The application of the dynamic stiffness matrix is illustrated by particular composite beams for which some comparative results are available in the literature. The effects of axial force and boundary condition on the natural frequencies, buckling loads and/or mode shapes of the laminated beams are demonstrated.
机译:采用动力刚度法研究了任意叠合的轴向加载叠层复合梁的自由振动和屈曲行为。公式中考虑了轴向力,泊松效应,轴向变形,剪切变形和旋转惯性的影响。精确的动态刚度矩阵是通过直接求解自由振动中轴向加载的叠层梁的控制微分方程而得出的。动态刚度矩阵的应用通过特殊的复合梁进行了说明,在文献中可以获得一些比较结果。证明了轴向力和边界条件对叠层梁的固有频率,屈曲载荷和/或模态形状的影响。

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