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Molecular Dynamics and Finite Element Investigation of Polymer Interphase Effects on Effective Stiffness of Wavy Aligned Carbon Nanotube Composites

机译:聚合物界面对波浪取向碳纳米管复合材料有效刚度的分子动力学和有限元研究

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Interphase effects have been studied for their effect on composite properties for many decades, and it is well documented that an interphase can exist in polymer composites comprised of nanofibers as well. We present a first study of interphase effects on the basic elastic response of wavy aligned carbon nanotube (A-CNT) polymer nanocomposties (PNCs). Waviness is characterized by ex situ pre-fabrication imaging of A-CNT forests and used as an input to finite element analyses of the PNCs containing an interphase region in the thermoset polymer defined using molecular dynamics (MD) simulations. The interphase thickness of ~lnm is found to be independent of crosslink density and contain regions of both higher and lower mass density than the bulk polymer. Finite element analyses of wavy single and double-wall A-CNT PNCs incorporating this interphase, allow the effective stiffness based on a representative volume element to be calculated. Waviness of the A-CNTs dominates the effective axial stiffness of the PNCs, with the interphase having a negligible effect. The interphase changes the stress and strain distribution local to the CNT 'fiber' and this is expected to play an important role in failure, such as CNT pullout, of the CNT-polymer system. These findings, in addition to the relatively high volume fraction (V_f) of the interphase in PNCs with high CNT V_f, suggests that the interphase may play a more important role in PNCs than in micron-scale (typical) collimated fiber composites. Future work in this area includes inelastic polymer response during nanofiber pullout.
机译:关于相间效应对复合材料性能的影响已进行了数十年的研究,并且有据可查地证明,在由纳米纤维组成的聚合物复合材料中也可以存在相间效应。我们目前对波浪取向的碳纳米管(A-CNT)聚合物纳米复合材料(PNCs)的基本弹性响应的相间影响的首次研究。波纹度通过A-CNT森林的异地预制成像来表征,并用作对使用分子动力学(MD)模拟定义的热固性聚合物中包含相间区域的PNC进行有限元分析的输入。发现〜1nm的相间厚度与交联密度无关,并且包含比本体聚合物高和低的质量密度区域。包含此相的波浪形单壁和双壁A-CNT PNC的有限元分析,可以根据代表性的体积元素计算有效刚度。 A-CNT的波纹度决定了PNC的有效轴向刚度,而相间的影响可忽略不计。相变改变了碳纳米管“纤维”局部的应力和应变分布,预计这将在碳纳米管聚合物系统的失效(例如碳纳米管拔出)中发挥重要作用。这些发现,除了具有较高CNT V_f的PNC中相间相对较高的体积分数(V_f)外,还表明相相在PNC中可能比在微米级(典型)准直纤维复合材料中发挥更重要的作用。该领域的未来工作包括纳米纤维拉出过程中的非弹性聚合物响应。

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