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通过随机微观结构建模聚合物纳米复合材料中的渗流

Modeling Percolation in Polymer Nanocomposites by Stochastic Microstructuring.

作者信息

Soto Matias, Esteva Milton, Martínez-Romero Oscar, Baez Jesús, Elías-Zúñiga Alex

机构信息

Escuela de Ingeniería y Ciencias, Tecnologico de Monterrey, Campus Monterrey, Ave. Eugenio Garza Sada 2501, Monterrey, N.L. 64849, Mexico.

Centro de Estudios de Energía, Dpto. de Ing. Eléctrica, Tecnologico de Monterrey, Campus Monterrey, Ave. Eugenio Garza Sada 2501, Monterrey, N.L. 64849, Mexico.

出版信息

Materials (Basel). 2015 Sep 30;8(10):6697-6718. doi: 10.3390/ma8105334.

Abstract

A methodology was developed for the prediction of the electrical properties of carbon nanotube-polymer nanocomposites via Monte Carlo computational simulations. A two-dimensional microstructure that takes into account waviness, fiber length and diameter distributions is used as a representative volume element. Fiber interactions in the microstructure are identified and then modeled as an equivalent electrical circuit, assuming one-third metallic and two-thirds semiconductor nanotubes. Tunneling paths in the microstructure are also modeled as electrical resistors, and crossing fibers are accounted for by assuming a contact resistance associated with them. The equivalent resistor network is then converted into a set of linear equations using nodal voltage analysis, which is then solved by means of the Gauss-Jordan elimination method. Nodal voltages are obtained for the microstructure, from which the percolation probability, equivalent resistance and conductivity are calculated. Percolation probability curves and electrical conductivity values are compared to those found in the literature.

摘要

通过蒙特卡罗计算模拟,开发了一种预测碳纳米管-聚合物纳米复合材料电学性能的方法。将考虑了波纹度、纤维长度和直径分布的二维微观结构用作代表性体积单元。识别微观结构中的纤维相互作用,然后将其建模为等效电路,假设三分之一为金属纳米管,三分之二为半导体纳米管。微观结构中的隧穿路径也被建模为电阻器,交叉纤维则通过假设与之相关的接触电阻来考虑。然后使用节点电压分析将等效电阻网络转换为一组线性方程,再通过高斯-约旦消元法求解。获得微观结构的节点电压,据此计算渗流概率、等效电阻和电导率。将渗流概率曲线和电导率值与文献中的结果进行比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d374/5455403/698cda66d516/materials-08-05334-g001.jpg

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