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Large amplitude vibration of polymer composite stiffened laminates by the finite element method

机译:聚合物复合材料加劲层板的大振幅振动有限元分析

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Large amplitude free flexural vibration analyses of composite stiffened plates have been carried out using a C exp 0 nine noded Lagrangian element. The element, capable of incorporating curved boundaries, is based on the first order shear deformation theory. The large deformation effect of the stiffened plates structures has been taken care of by the dynamic version of von Karman's field equations. The resulting nonlinears equations have been solved by the direct iteration technique using linear mode shapes as the starting vectors. The stiffeners have been modeled with the same shape functions as that of plate element enforcing compatibility without introduction of additional unknowns. A large number of problems of isotropic and composite bare and stiffened plates have been analyzed to validate the formulation and some new results have been put forward for future reference.
机译:已经使用C exp 0九节点拉格朗日元素进行了复合材料加劲板的大振幅自由挠曲振动分析。能够合并弯曲边界的元素基于一阶剪切变形理论。冯·卡曼场方程的动态形式已经解决了加劲板结构的大变形效应。通过使用线性模式形状作为起始向量的直接迭代技术已经解决了所得的非线性方程。加强筋已建模为具有与平板构件相同的形状功能,从而增强了兼容性,而没有引入其他未知数。分析了各向同性和复合的裸露和加劲板的大量问题,以验证该公式,并提出了一些新结果,以供将来参考。

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