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Influence of Thrower-Stone-Wales defects on the interfacial properties of carbon nanotube/polypropylene composites by a molecular dynamics approach

机译:分子动力学方法研究Thrower-Stone-Wales缺陷对碳纳米管/聚丙烯复合材料界面性能的影响

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摘要

A molecular dynamics (MD) simulations study is performed on Thrower-Stone-Wales (TSW) defected carbon nanotube (CNT)/polypropylene (PP) composites. We identify the degradation of the CNT and the improvement of the interfacial adhesion between the defected CNTs and PP molecules considering different CNTs with different numbers of TSW defects. By embedding the CNTs into a PP matrix, the effect of the TSW defects on the transversely isotropic elastic stiffness of polymer composites is calculated by MD simulations. Even if the TSW defects degrade the elastic properties of the CNTs, the transverse Young's modulus and the transverse and longitudinal shear moduli of the composites increase due to the stronger interfacial adhesion between the defected CNTs and matrix, whereas the longitudinal Young's modulus of the composites decreases. To elucidate the improved interfacial load transfer between the CNTs and the matrix, random polymer chain crystallization onto the surface of CNTs is simulated. The simulation shows that PP chains are wrapped more uniformly onto the surfaces of defected CNTs than onto the pristine CNT. The non-bond adhesion energy between the PP chains and the defected CNTs is greater than that between the PP chains and the pristine CNT.
机译:在Thrower-Stone-Wales(TSW)缺陷碳纳米管(CNT)/聚丙烯(PP)复合材料上进行了分子动力学(MD)模拟研究。考虑到具有不同数量的TSW缺陷的不同CNT,我们确定了CNT的降解和缺陷CNT与PP分子之间的界面粘附性的改善。通过将CNT嵌入PP基体中,通过MD模拟计算了TSW缺陷对聚合物复合材料横向各向同性弹性刚度的影响。即使TSW缺陷降低了CNT的弹性,复合材料的横向杨氏模量以及横向和纵向剪切模量也会由于缺陷的CNT与基质之间更强的界面粘合力而增加,而复合材料的纵向杨氏模量却下降。为了阐明改进的CNT与基质之间的界面载荷转移,对在CNT表面上的无规聚合物链结晶进行了模拟。模拟表明,PP链比有缺陷的CNT更均匀地缠绕在有缺陷的CNT的表面上。 PP链和有缺陷的CNT之间的非键粘合能大于PP链和原始CNT之间的非键粘合能。

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