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首页> 外文期刊>Scientific reports. >A Comparison of the Elastic Properties of Graphene- and Fullerene-Reinforced Polymer Composites: The Role of Filler Morphology and Size
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A Comparison of the Elastic Properties of Graphene- and Fullerene-Reinforced Polymer Composites: The Role of Filler Morphology and Size

机译:石墨烯和富勒烯增强的聚合物复合材料的弹性性能比较:填料形态和尺寸的作用

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Nanoscale carbon-based fillers are known to significantly alter the mechanical and electrical properties of polymers even at relatively low loadings. We report results from extensive molecular-dynamics simulations of mechanical testing of model polymer (high-density polyethylene) nanocomposites reinforced by nanocarbon fillers consisting of graphene flakes and fullerenes. By systematically varying filler concentration, morphology, and size, we identify clear trends in composite stiffness with reinforcement. To within statistical error, spherical fullerenes provide a nearly size-independent level of reinforcement. In contrast, two-dimensional graphene flakes induce a strongly size-dependent response: we find that flakes with radii in the 2-4?nm range provide appreciable enhancement in stiffness, which scales linearly with flake radius. Thus, with flakes approaching typical experimental sizes (~0.1-1?μm), we expect graphene fillers to provide substantial reinforcement, which also is much greater than what could be achieved with fullerene fillers. We identify the atomic-scale features responsible for this size- and morphology-dependent response, notably, ordering and densification of polymer chains at the filler-matrix interface, thereby providing insights into avenues for further control and enhancement of the mechanical properties of polymer nanocomposites.
机译:已知纳米级碳基填料即使在相对较低的负载下也能显着改变聚合物的机械和电气性能。我们报告了对由模碳薄片和富勒烯组成的纳米碳填料增强的模型聚合物(高密度聚乙烯)纳米复合材料进行机械测试的大量分子动力学模拟结果。通过系统地改变填料的浓度,形态和尺寸,我们可以确定增强复合材料刚度的明显趋势。为了达到统计误差,球形富勒烯提供了几乎与尺寸无关的增强水平。相比之下,二维石墨烯薄片会引起强烈的尺寸依赖性响应:我们发现,半径在2-4?nm范围内的薄片可显着提高刚度,硬度随薄片半径呈线性比例。因此,随着薄片接近典型的实验尺寸(〜0.1-1μm),我们期望石墨烯填料提供实质性的增强作用,这也远大于富勒烯填料所能达到的。我们确定造成这种与尺寸和形态有关的响应的原子尺度特征,尤其是填料-基质界面处聚合物链的有序排列和致密化,从而为进一步控制和增强聚合物纳米复合材料的机械性能提供了见识。 。

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