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Analysis of Laminated and Sandwich Composite Structures Using Solid-like Shell Elements

机译:类固体壳单元对夹层复合结构的分析

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摘要

A new solid-like shell element was formulated which is suitable for analysis of laminated and sandwich composite structures. Then, a multiscale analysis technique was implemented to the shell element formulation so that micro-level stresses and strains (i.e. stresses and strains in reinforcing fibers and the binding matrix) in those structures can be computed. The shell element has three displacement degrees of freedom per node like a 3-D solid element. Therefore, the shell elements can be stacked easily on top of one another like 3-D solid elements in order to represent multiple layers through the thickness of laminated and sandwich structures. The effect of a thin resin or adhesive layer in laminated and sandwich composite structures was investigated on both static and the dynamic responses of the structures using the developed shell elements. The study showed an apparent effect of the resin/adhesive layer even though it is very thin. As a result, the present shell element can be used effectively to include those thin layers in finite element analysis models of laminated and sandwich composite structures.
机译:配制了一种新的固体壳单元,适用于分析层压和三明治复合结构。然后,对壳单元配方实施了多尺度分析技术,以便可以计算这些结构中的微观应力和应变(即增强纤维和粘结基质中的应力和应变)。像3-D实体元素一样,壳单元每个节点具有三个位移自由度。因此,壳元件可以像3-D实体元件一样容易地彼此堆叠,以便通过层压和三明治结构的厚度表示多层。使用开发的壳单元,研究了薄树脂或粘合剂层在层压和三明治复合结构中对结构的静态和动态响应的影响。研究表明,即使树脂/粘合剂层很薄,它也具有明显的效果。结果,本发明的壳单元可以有效地用于在层压和夹心复合结构的有限元分析模型中包括那些薄层。

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