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An efficient layerwise finite element for shallow composite and sandwich shells

机译:浅层复合材料和夹层壳的高效分层有限元

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In this work, we extend a previously developed four-node quadrilateral element for laminated plates based on an efficient layerwise theory, called the zigzag theory (ZIGT), to laminated shallow shells. The accuracy of the new element is assessed for static and free vibration responses, by comparing with the available 3D elasticity solutions as well as the 2D analytical and FE solutions for various singly- and doubly-curved composite and sandwich shallow shells. The comparison with other available finite elements shows that the present element with seven degrees of freedom per node, gives by far the best performance in terms of accuracy, computational efficiency and simplicity. The results are more accurate than even the three-layer higher order layerwise theories, which have been developed specifically for sandwich shells. The equivalent single layer theories with the same or even higher number of primary variables yield extremely poor predictions, particularly for sandwich shells.
机译:在这项工作中,我们将基于有效层状理论(称为之字形理论(ZIGT))的叠层板的先前开发的四节点四边形元素扩展到叠层浅壳。通过与可用的3D弹性解决方案以及各种单弯曲和双弯曲复合材料以及夹心浅壳的2D分析和有限元解决方案进行比较,评估了新元件在静态和自由振动响应方面的精度。与其他可用有限元的比较表明,当前的每个节点具有七个自由度的元素在准确性,计算效率和简单性方面迄今为止提供了最佳性能。结果甚至比专为三明治壳开发的三层高阶分层理论更准确。具有相同或什至更高数量的主要变量的等效单层理论,得出的预测非常差,特别是对于三明治壳。

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