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Modeling the electrical resistivity of polymer composites with segregated structures

机译:对具有隔离结构的聚合物复合材料的电阻率进行建模

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摘要

Hybrid carbon nanotube composites with two different types of fillers have attracted considerable attention for various advantages. The incorporation of micro-scale secondary fillers creates an excluded volume that leads to the increase in the electrical conductivity. By contrast, nano-scale secondary fillers shows a conflicting behavior of the decreased electrical conductivity with micro-scale secondary fillers. Although several attempts have been made in theoretical modeling of secondary-filler composites, the knowledge about how the electrical conductivity depends on the dimension of secondary fillers was not fully understood. This work aims at comprehensive understanding of the size effect of secondary particulate fillers on the electrical conductivity, via the combination of Voronoi geometry induced from Swiss cheese models and the underlying percolation theory. This indicates a transition in the impact of the excluded volume, i.e., the adjustment of the electrical conductivity was measured in cooperation with loading of second fillers with different sizes.
机译:具有两种不同类型的填料的杂化碳纳米管复合材料因各种优点而引起了相当大的关注。微米级次要填料的加入会产生排除体积,从而导致电导率增加。相比之下,纳米级次要填料表现出与微米级次要填料的电导率降低相矛盾的行为。尽管在辅助填料复合材料的理论建模中已进行了几次尝试,但有关电导率如何取决于辅助填料尺寸的知识尚不完全清楚。这项工作旨在通过结合瑞士奶酪模型产生的Voronoi几何形状和潜在的渗流理论,全面了解次级颗粒填料对电导率的尺寸影响。这表明排除体积的影响的转变,即,电导率的调节是与不同尺寸的第二填料的加载一起测量的。

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