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Micromechanisms of load transfer in a unidirectional carbon fibre-reinforced epoxy composite due to fibre failures. Part 2: Influence of viscoelastic and plastic matrices on the mechanisms of load transfer

机译:由于纤维失效,单向碳纤维增强环氧复合材料中载荷传递的微观机制。第2部分:粘弹性和塑性矩阵对载荷传递机理的影响

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摘要

A local three-dimensional (3D) finite element analysis (FEA), of the mechanisms governing composite damage (in the region around a fibre break), has been carried out. The model considers viscoelastic and plastic matrix behaviours with and without deb-onding at the broken fibre/matrix interface. The finite element analysis has shown that even a simple viscoelastic law describing the behaviour of the epoxy resin leads to an increasing load on the neighbouring intact fibres, as a function of time. The plastic behaviour of the matrix has been shown to have consequences on reloading after unloading. In contrast to other studies reported in the literature, the calculations were carried out on different representative 3D unit cells, corresponding to different states of composite damage. In this way, the usual limitations of the finite element approach have been overcome as the number of fibres considered has not been restricted to only the fibres nearest to the broken fibre and the evaluation of the stress field is more accurate. This study follows a previous study (Part 1) which considered the behaviour of a unidirectional composite consisting of both elastic fibres and matrix which is used to validate the approach taken in the present paper.
机译:已经进行了控制复合材料破坏的机制(在纤维断裂周围的区域)的局部三维(3D)有限元分析(FEA)。该模型考虑了在断裂的纤维/基体界面处有无突波的粘弹性和塑性基体行为。有限元分析表明,即使是描述环氧树脂行为的简单粘弹性定律,也会导致相邻完整纤维上的负荷随时间变化而增加。已经表明,基质的塑性行为对卸载后的重新装载有影响。与文献中报道的其他研究相比,计算是在不同的代表性3D晶胞上进行的,对应于复合损伤的不同状态。这样,由于所考虑的纤维数量不仅限于仅最靠近断裂纤维的纤维,并且应力场的评估更加准确,因此克服了有限元方法的通常限制。本研究遵循先前的研究(第1部分),该研究考虑了由弹性纤维和基质组成的单向复合材料的行为,该复合材料用于验证本文采用的方法。

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