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Transient response of laminated plates with arbitrary laminations and boundary conditions under general dynamic loadings

机译:一般动载荷下具有任意叠片和边界条件的叠片的瞬态响应

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摘要

The dynamic analysis of laminated plates with various loading and boundary conditions is presented employing generalized differential quadrature (GDQ) method. The first-order shear deformation theory is considered to model the transient response of the plate. The GDQ technique together with Newmark integration scheme is employed to solve the system of transient equations governing dynamics of the plate. Different symmetric and asymmetric lamination sequences together with various combinations of clamped, simply supported, and free boundary conditions are considered. Particular interest of this study regards to asymmetric orthotropic plates having free edge and mixed boundary conditions. It is shown that the method provides reasonably accurate results with relatively small number of grid points. Comparison of the results with those of other methods demonstrates a very good agreement. It is also revealed that the present method offers similar order of accuracy for all variables including displacements and stress resultants.
机译:利用广义差分正交积分法(GDQ)对具有不同载荷和边界条件的叠层板进行了动力学分析。一阶剪切变形理论被认为是用来模拟板的瞬态响应的。 GDQ技术与Newmark积分方案一起用于求解控制板动力学的瞬态方程组。考虑了不同的对称和不对称层压顺序以及夹紧,简单支撑和自由边界条件的各种组合。该研究特别关注具有自由边缘和混合边界条件的非对称正交各向异性板。结果表明,该方法在网格点数量较少的情况下提供了相当准确的结果。将结果与其他方法的结果进行比较显示出很好的一致性。还揭示出,对于所有变量,包括位移和应力结果,本方法提供相似的精度等级。

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