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Mechanical behavior of textile composite materials using a hybrid finite element approach

机译:使用混合有限元方法的纺织复合材料的机械性能

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摘要

A novel analytical solution is presented to describe the mechanical behavior and failure of textile reinforced composites. This solution is constructed from two parts. First a geometrical model, based on a processing science approach coupled with graphical rendering, is utilized to quantify the spatial characteristics of the fabric preform inside the composite. A 3-D iterative hybrid finite element analysis is then used, utilizing data acquired from the geometrical model, to predict the stress-strain behavior of the composite. Inelastic behavior is modeled using an expanded Hahn and Tsai model and maximum stress criterion is used to predict initial failure. Damage progression is predicted based on a stiffness reduction approach. AS4 carbon/epoxy plain weave composite laminates, with a range of fiber volume fractions, have been tested. A 3-D woven E-glass/poly-vinyl-ester (PVE) angle interlock composite was also tested. Analytical results are compared with results from this experiment as well as other analytical models and experimental data in the literature. Theoretical model predictions are in agreement with most experimental data.
机译:提出了一种新颖的分析解决方案来描述织物增强复合材料的力学行为和破坏。此解决方案由两部分构成。首先,基于加工科学方法和图形渲染的几何模型用于量化复合材料内部织物预成型坯的空间特征。然后使用3-D迭代混合有限元分析,利用从几何模型获得的数据来预测复合材料的应力应变行为。使用扩展的Hahn和Tsai模型对非弹性行为进行建模,并使用最大应力准则来预测初始破坏。可以基于刚度降低方法预测损伤的进展。已测试了具有各种纤维体积分数的AS4碳/环氧平纹复合层压板。还测试了3D编织的E玻璃/聚乙烯酯(PVE)角互锁复合材料。将分析结果与该实验的结果以及文献中的其他分析模型和实验数据进行比较。理论模型的预测与大多数实验数据一致。

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