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Electrical Percolation in Carbon Nanotube Dispersions: A Mesoscale Modeling and Experimental Study

机译:碳纳米管分散体中的电渗滤:Mescle模型和实验研究

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This paper describes our current work on electrical percolation in carbon nanotubes filled thermoplastic polymer fibers. The objective of this work is to develop an understanding of how the electrical properties of the nanotube/polymer composites are affected by processing conditions, orientation of nanotubes, and their loading fraction. In the first part of the work, mesoscale modelling of nanotubes was carried out using a dissipative particle dynamics method. The percolation threshold required to achieve an electrically conductive network of nanotubes within in a polymer fibre was predicted as a function of orientation and aspect ratio of nanotubes using a Monte Carlo method to measure the network impedance. In the second part of this work, X-ray diffraction analyses were carried out to find the degree of alignment of nanotubes in polyamide 12 fibers.
机译:本文介绍了我们目前关于碳纳米管填充热塑性聚合物纤维的电气渗滤的工作。 本作作品的目的是制定理解纳米管/聚合物复合材料的电特性是如何受加工条件,纳米管取向的影响及其装载级分的影响。 在该工作的第一部分中,使用耗散粒子动力学方法进行纳米管的Mescle建模。 预测在聚合物纤维内实现纳米管的导电网络所需的渗透阈值作为纳米管的取向和纵横比使用蒙特卡罗方法来测量网络阻抗的函数。 在该工作的第二部分中,进行X射线衍射分析,以找到聚酰胺12纤维中纳米管的比定程度。

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