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A finite element formulation for the analysis of laminated composite shells

机译:层合复合材料壳分析的有限元公式

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摘要

An improved finite element model for the linear analysis of anisotropic and laminated doubly curved, moderately thick composite shells/shell-panels is presented. The first order shear deformation shell theory is used as a basis for the development of proposed finite element model. The Mixed Interpolation of Tensorial Components (MITC) approach is adopted to overcome the effects of shear and membrane locking on the predicted structural response. Special attention is paid to the spherical shell-panels which are rectangular in plan. The extensional and flexural stresses are regularized by least square smoothing technique. The out-of-plane stress profiles are recovered from the 3-D equilibrium equations. The results are compared with the available analytical and numerical solutions and the agreement between them is found to be excellent in both the cases of shallow and deep shells. The performance of the proposed element is also illustrated with numerical examples.
机译:提出了一种改进的有限元模型,用于各向异性和层合双弯曲,中等厚度的复合壳/壳板的线性分析。一阶剪切变形壳理论被用作发展有限元模型的基础。采用张量分量的混合插值(MITC)方法来克服剪切和膜锁定对预测结构响应的影响。特别注意平面矩形的球形壳面板。拉伸应力和弯曲应力通过最小二乘平滑技术进行正则化。从3-D平衡方程恢复面外应力分布。将结果与可用的解析解和数值解进行比较,发现在浅壳和深壳情况下,它们之间的一致性都很好。所提出的元件的性能还通过数值示例来说明。

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