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An Analytical Model of Interlaminar Fracture of Polymer Composite Reinforced by Carbon Fibres Grafted with Carbon Nanotubes

机译:碳纳米管接枝碳纤维增强聚合物复合材料层间断裂的分析模型

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摘要

An analytical model was developed to study the interlaminar fracture behaviour of polymer composite reinforced by carbon fibres grafted with carbon nanotubes. Delamination properties, such as load with displacement or crack (R-curve) and toughness with crack (GR-curve), can be obtained from this model. The bridging laws presented, based on the CNT pullout mechanism (CNT pullout from polymer matrix) and the CNT sword-in-sheath mechanism (CNT breakage), were incorporated into the proposed analytical model to investigate the influence of the structure of CNT growth onto CFs (CNT@CFs) on delamination properties. The numerical results showed that different toughening mechanisms led to different features of GR-curves, R-curves, and load with displacement curves. Parametric study demonstrated that strengthening the CNT@CF interface resulted in significant improvement in toughness. Further, it was found that elastic deformation of CNTs played an important role in the toughness improvement in the CNT sword-in-sheath mechanism, but no such role was evident in the CNT pullout mechanism.
机译:建立了一个分析模型来研究由碳纳米管接枝的碳纤维增强的聚合物复合材料的层间断裂行为。可以从该模型获得分层特性,例如带有位移或裂纹的载荷(R曲线)和带有裂纹的韧性(GR曲线)。根据碳纳米管的拉拔机理(从聚合物基体中拉出碳纳米管)和碳纳米管刀鞘结构(碳纳米管断裂)提出的桥接规律,被引入到所提出的分析模型中,以研究碳纳米管生长结构对碳纳米管生长结构的影响。 CFs(CNT @ CFs)的分层特性。数值结果表明,不同的增韧机理导致了GR曲线,R曲线和带有位移曲线的荷载的不同特征。参数研究表明,加强CNT @ CF界面可显着提高韧性。此外,发现CNT的弹性变形在CNT鞘中剑鞘机理的韧性提高中起重要作用,但是在CNT拔出机理中没有明显作用。

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