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Interlaminar stress analysis of composite shell structures using a geometrically nonlinear layer-wise shell finite element

机译:使用几何非线性层壳体壳有限元复合壳结构的复合壳体结构的跨界应力分析

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摘要

This work aims to calculate interlaminar stress distribution through the thickness of multilayered composite shell structures by employing a novel nonlinear layer-wise shell finite element formulation. Adapting the Mindlin- Reissner theory in each layer, the shear-deformable layer-wise shell element presents the interlaminar shear stress distributions by increasing the number of layers. The interlaminar normal stress distribution is then determined using the finite difference solution of the general form of equilibrium equation in the non orthogonal curvilinear grid along the Gaussian points. Two boundary conditions at the bottom and the top surfaces are satisfied by adopting the linear Lagrange interpolation function. The developed formulation is assessed through some illustrative problems solved using a proprietary finite element computer program. The results compare very well with those available in the literature and those obtained by simulations with the commercial finite element software Ansys.
机译:该工作旨在通过采用新型非线性层面壳有限元制剂来计算通过多层复合壳结构的厚度来计算间隔应力分布。在每层中调整Mindlin-Reissner理论,剪切可变形层 - 方向壳元件通过增加层数来呈现InterlaMINAR剪切应力分布。然后使用沿高斯点的非正交曲线栅格中的一般平衡方程的一般平衡方程的有限差分解决方案来确定层间正常应力分布。通过采用线性拉格朗日插值功能,满足底部的两个边界条件和顶表面。通过使用专有有限元计算机程序解决的一些说明性问题来评估开发的配方。结果与文献中可用的结果相比,与商业有限元软件ANSYS模拟获得的那些。

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