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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >Interfacial load transfer mechanisms in carbon nanotube-polymer nanocomposites
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Interfacial load transfer mechanisms in carbon nanotube-polymer nanocomposites

机译:碳纳米管 - 聚合物纳米复合材料中的界面载荷转移机制

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Carbon nanotubes (CNTs) are highly promising for strength reinforcement in polymer nanocomposites, but conflicting interfacial properties have been reported by single nanotube pull-out experiments. Here, we report the interfacial load transfer mechanisms during pull-out of CNTs from PMMA matrices, using massively- parallel molecular dynamics simulations. We show that the pullout forces associated with non-bonded interactions between CNT and PMMA are generally small, and are weakly-dependent on the embedment length of the nanotube. These pull-out forces do not significantly increase with the presence of Stone Wales or vacancy defects along the nanotube. In contrast, low-density distribution of cross-links along the CNT-PMMA interface increases the pull-out forces by an order of magnitude. At each cross-linked site, mechanical unfolding and pull-out of single or pair polymer chain(s) attached to the individual cross-link bonds result in substantial interfacial strengthening and toughening, while contributing to interfacial slip between CNT and PIVIMA. Our interfacial shear-slip model shows that the interfacial loads are evenly distributed among the finite number of cross-link bonds at low cross-link densities or for nanotubes with short embedment lengths. At higher cross-link densities or for nanotubes with longer embedment lengths, a no-slip zone now develops where shear lag effects become important. Implications of these results, in the context of recent nanotube pull-out experiments, are discussed.
机译:碳纳米管(CNT)对聚合物纳米复合材料中的强度增强具有高度前途,但单一纳米管拉出实验报告了界面性质的冲突界面性质。在这里,我们通过大规模平行的分子动力学模拟报告从PMMA矩阵拉出CNT期间的界面载荷转移机制。我们表明,与CNT和PMMA之间的非粘合相互作用相关的拉伸力通常是小的,并且弱依赖于纳米管的嵌入长度。随着沿着纳米管的空间缺陷的存在,这些拉出力不会显着增加。相反,沿着CNT-PMMA界面的交联的低密度分布通过幅度的阶数增加了拉出力。在每个交联位点,机械展开和拔出单个或对聚合物链的单个或对聚合物链,其连接到各个交联键,导致大量的界面强化和增韧,同时有助于CNT和Pivima之间的界面滑移。我们的界面剪切式模型表明,界面载荷在低交联密度下的有限数量的交联键之间均匀分布,或用于具有短嵌入长度的纳米管。在较高的交叉链路密度或具有较长嵌入长度的纳米管中,现在没有滑动区域正在开发剪切滞后效果变得重要的地方。讨论了这些结果的影响,在最近的纳米管拉出实验的背景下进行了讨论。

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