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Influence of Waviness on the Elastic Properties of Aligned Carbon Nanotube Polymer Matrix Nanocomposites

机译:波度对齐次碳纳米管聚合物基纳米复合材料弹性性能的影响

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摘要

The promise of enhanced performance has motivated the study of one dimensional nanomaterials, especially aligned carbon nanotubes (A-CNTs), for the reinforcement of polymeric materials. While early work has shown that CNTs have remarkable theoretical properties, more recent work on aligned CNT polymer matrix nanocomposites (A-PNCs) have reported mechanical properties that are orders of magnitude lower than those predicted by rule of mixtures. This large difference primarily originates from the morphology of the CNTs that reinforce the A-PNCs, which have significant local curvature commonly referred to as waviness, but are commonly modeled using the oversimplified straight columngeometry. Here we used a simulation framework capable of analyzing 105 wavy CNTs with realistic stochastic morphologies to study the influence of waviness on the compliance contribution of wavy A-CNTs to the effective elastic modulus of A-PNCs, and show thatwaviness is responsible for the orders of magnitude over-prediction of the A-PNC effective modulus by existing theoretical frameworks that both neglect the shear deformation mechanism and do not properly account for the CNT morphpology. Additional work to quantify the morphology of A-PNCs in three dimensions and simulate their full elastic constitutive relations is planned.
机译:增强性能的承诺激发了对一维纳米材料,尤其是取向碳纳米管(A-CNT)的研究,以增强聚合物材料。尽管早期的工作表明CNT具有出色的理论特性,但有关对齐的CNT聚合物基体纳米复合材料(A-PNC)的最新工作报道的机械性能比按混合物法则预测的机械性能要低几个数量级。较大的差异主要源于增强A-PNC的CNT形态,A-PNC具有显着的局部曲率(通常称为波纹度),但通常使用过于简化的直柱几何模型进行建模。在这里,我们使用了能够分析具有现实随机形态的105个波浪状CNT的仿真框架,研究了波浪度对波浪状A-CNT的顺应性贡献对A-PNCs的有效弹性模量的影响,并表明波浪度是按顺序排列的现有理论框架对A-PNC有效模量的高估过大,这些理论框架既忽略了剪切变形机制,又没有适当考虑CNT的形态。计划进行额外的工作来量化A-PNC的三维形态,并模拟它们的完全弹性本构关系。

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