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Effects of the filler size on the electrical percolation threshold of carbon black-carbon nanotube-polymer composites

机译:填料尺寸对炭黑 - 碳纳米管 - 聚合物复合材料电渗透阈值的影响

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The Monte Carlo simulation of filled conductive polymer materials is a method of continuously generating a random conformation and averaging the interesting results to simulate the random dispersion of fillers in space. In our simulation, the irregular shapes of the filler were abstracted into regular ones. Carbon black (CB) aggregates were modeled as spheres, and carbon nanotubes (CNTs) were modeled as capped cylinders. The connection of the fillers was estimated via the calculation of the shortest distance between them; this determined whether a percolation pathway was formed or not. Numerical results were obtained, and these highlight the effects of the filler size, including the aspect ratio of CNTs and the ratio of the diameter of the CB aggregates to the diameter of the CNTs on the electrical percolation threshold (EPT). We found that the EPT decreased with increasing CNT aspect ratio and decreased the diameter ratio of the CB aggregates to CNTs. The simulation results were obtained by a simple pathway-finder algorithm, which was proven to be effective compared with existing numerical, theoretical, and experimental simulations. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46517.
机译:填充导电聚合物材料的蒙特卡罗模拟是一种连续产生随机构象的方法,并平均有趣的结果,以模拟填料在空间中的随机分散。在我们的模拟中,将填料的不规则形状抽象成常规形状。炭黑(Cb)聚集体被建模为球体,并且碳纳米管(CNT)被建模为盖缸。通过计算它们之间的最短距离来估计填料的连接;这确定了是否形成渗透途径。获得了数值结果,这些结果突出了填料尺寸的影响,包括CNT的纵横比和Cb聚集的直径与CNT的直径的比率在电渗滤阈值(EPT)上。我们发现,随着CNT纵横比的增加,EPT降低,并降低了Cb聚集体与CNT的直径比。通过简单的途径查找器算法获得模拟结果,与现有数值,理论和实验模拟相比,被证明是有效的。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,46517。

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