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Transient dynamic response of doubly curved laminated composite shells under pulse loading

机译:脉冲载荷下双弯曲层压复合壳的瞬态动力响应

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摘要

Transient response behavior of laminated doubly curved shells with varying geometry and boundary conditions subjected to various time-dependent pulse loads is investigated using Higher order Shear Deformation Theory (HSDT) in the present study. The ratio of thickness co-ordinate to radius of shell (z/R) is incorporated in the mathematical formulation based on HSDT. The condition of zero transverse shear stresses at free surfaces of laminated shell is also included in the displacement function. A C-0 finite element formulation using eight noded isoparametric shell element with seven degrees of freedom per node is applied to evaluate the dynamic response of shells. Three types of pulse loading such as sine, triangular and rectangular pulses are considered for the present investigation. Newmark's beta method is applied to solve the dynamic equilibrium equation of the shells. The accuracy of the present analysis is examined by comparing the results obtained with those available in the published literature. Several numerical examples are illustrated to show the effects of pulse loading and boundary condition on the central displacement and stresses of laminated composite shells.
机译:具有变化的几何形状和经受各种随时间变化的脉冲负载的边界条件层压双曲壳的瞬态响应行为是在本研究中使用更高阶的剪切变形理论(HSDT)研究。基于HSDT的数学制剂结合在壳体(Z / R)中旋转到壳半径(Z / R)的比例。层叠壳自由表面处的零横向剪切应力的条件也包括在位移函数中。使用八个点开的等偶像壳元件的C-0有限元配方,每个节点具有七个自由度,以评估壳体的动态响应。对于本研究,考虑了三种类型的脉冲载荷如正弦,三角形和矩形脉冲。纽马克的测试方法应用于解决壳体的动态平衡方程。通过比较出版文献中可用的结果来检查本分析的准确性。示出了几个数值示例以显示脉冲负载和边界条件对层压复合壳的中心位移和应力的影响。

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