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Discrete element modelling of unidirectional fibre-reinforced polymers under transverse tension

机译:横向拉伸下单向纤维增强聚合物的离散元建模

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摘要

The mechanical behaviour of unidirectional fibre-reinforced polymer composites subjected to transverse tension was studied using a two dimensional discrete element method. The Representative Volume Element (RVE) of the composite was idealised as a polymer matrix reinforced with randomly distributed parallel fibres. The matrix and fibres were constructed using disc particles bonded together using parallel bonds, while the fibre/matrix interfaces were represented by a displacement-softening model. The prevailing damage mechanisms observed from the model were interfacial debonding and matrix plastic deformation. Numerical simulations have shown that the magnitude of stress is significantly higher at the interfaces, especially in the areas with high fibre densities. Interface fracture energy, stiffness and strength all played important roles in the overall mechanical performance of the composite. It was also observed that tension cracks normally began with interfacial debonding. The merge of the interfacial and matrix micro-cracks resulted in the final catastrophic fracture. (C) 2014 Elsevier Ltd. All rights reserved.
机译:使用二维离散元方法研究了单向纤维增强聚合物复合材料在横向拉伸下的力学行为。复合材料的代表性体积元素(RVE)被理想化为由随机分布的平行纤维增强的聚合物基质。基质和纤维是使用通过平行键结合在一起的圆盘颗粒构建的,而纤维/基质界面则由位移软化模型表示。从模型中观察到的主要破坏机理是界面剥离和基体塑性变形。数值模拟表明,界面处的应力强度明显更高,尤其是在纤维密度较高的区域。界面断裂能,刚度和强度在复合材料的整体机械性能中均起着重要作用。还观察到,张力裂纹通常始于界面剥离。界面微裂纹和基质微裂纹的融合导致了最终的灾难性断裂。 (C)2014 Elsevier Ltd.保留所有权利。

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