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Application of the Mesh Superposition Technique to the Study of Deiaminations in Composites Thin Plates.

机译:网眼叠加技术在复合材料薄板中脱落研究的应用。

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Laminated composite structures are increasingly finding more applications in various fields thanks to their lower weight if compared with other materials of the same strength. Nevertheless, composites thin plates show a critical behavior in terms of damage propagation mechanisms when subjected to (low velocity) impact. Indeed they tend to produce deiaminations which can be hardly detected by optical inspections and can affect the global load carrying capability, leading to a premature structural collapse. The aim of this paper is to assess the capabilities of the Davies- Zhang approach (introduced in 1994 and aimed to the estimation of both the delamination initiation impact load and the size of the impact induced deiaminations) by using a multiscale FE model based on the mesh superposition technique. Indeed the impact area has been modeled layer-wise with an element per layer while the rest of the structure has been modeled at laminate level by layered elements by means of a homogenization approach for the determination of the equivalent laminate material properties. The impact induced delamination area has been determined by adopting stress-based criteria. The results (in terms of delamination initiation impact force and delamination size) have been compared to the ones obtained by adopting the Davies-Zhang approach.
机译:由于与相同强度的其他材料相比,层压复合结构越来越多地在各个领域中找到更多的应用。然而,复合材料薄板在受到(低速)冲击时的损坏传播机制方面表现出关键行为。事实上,他们倾向于产生可能因光学检查而难以检测的脱胺,并且可以影响全球载荷能力,导致过早的结构崩溃。本文的目的是评估戴维斯 - 张方法的能力(1994年推出,旨在通过使用基于的多尺度FE模型来估计分层发起抗冲击载荷和影响诱导的脱落的大小)网眼叠加技术。实际上,冲击区域已经通过每个层的元素进行了模型层,而通过均质化方法通过分层元件在层压水平上通过均质化方法进行建模,以确定等效的层压材料性能。通过采用基于应力的标准来确定冲击诱导的分层区域。将结果(根据分层启动冲击力和分层大小)与通过采用戴维斯 - 张方法获得的结果进行了比较。

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