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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Effect of melting and crystallization on the conductive network in conductive polymer composites
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Effect of melting and crystallization on the conductive network in conductive polymer composites

机译:熔融和结晶化对导电聚合物复合材料中导电网络的影响

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摘要

Investigation on the effect of melting and crystallization of polypropylene (PP) on the conductive network Of multi-wall carbon nanotubes (MWNTs) and carbon black (CB) in MWNT/PP and CB/PP composites is performed. The conductive networks formed by fillers with different aspect ratios (MWNTs and CB) are compared during melting and cooling experiments. The network is found to be deformed during melting and re-constructed again due to the re-agglomeration of fillers during isothermal annealing of the melt. Both deformation and re-construction of the network result in a substantial increase/decrease of the thermal resistivity of MWNT/PP and CB/PP composites. For the modelling of the dynamic network reformation three different approaches are tested: classic percolation theory, general effective medium theory (GEM) and Fournier equation.
机译:研究了聚丙烯(PP)的熔融和结晶化对MWNT / PP和CB / PP复合材料中多壁碳纳米管(MWNT)和炭黑(CB)导电网络的影响。在熔化和冷却实验期间,比较了由具有不同长宽比(MWNT和CB)的填料形成的导电网络。发现网络在熔融过程中变形,并且由于在熔融物的等温退火过程中填料的重新团聚而再次重构。网络的变形和重构都导致MWNT / PP和CB / PP复合材料的热阻显着增加/降低。对于动态网络重构的建模,测试了三种不同的方法:经典渗流理论,通用有效介质理论(GEM)和Fournier方程。

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