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Destruction and formation of a conductive carbon nanotube network in polymer melts:In-line experiments

机译:聚合物熔体中导电碳纳米管网络的破坏和形成:在线实验

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摘要

Investigations on electric conductivity and dielectric permittivity have been performed during melt processing of polycarbonate(PC)and poly amide 6(PA6)containing different amounts of multi-walled carbon nanotubes(MWNT).For the experiments a measurement slit die containing two electrodes in capacitor geometry was flanged to the outlet of a twin-screw extruder.AC conductivity and the related complex permittivity were measured in the frequency range from 21.5 to 10~6 Hz for different processing conditions(melt temperature and throughput)and after stopping the extruder.It was found that the conductivity dropped down to values typical for the matrix polymer when the extrusion started.After the extruder was stopped the conductivity shows an increase of up to eight orders of magnitude with time.This conductivity recovery in the rest time after mechanical deformation was found to be faster for increasing melt temperature or samples with higher CNT concentration.The increase of the conductivity in the quiescent melt is explained by reorganization of the conductive network-like filler structure,which was-at least partially-destroyed under mechanical deformation.The reformation kinetics of the conductive network after mechanical deformation is considered to be an agglomeration process,which can be approximated by a combination of cluster aggregation and percolation theory.
机译:在聚碳酸酯(PC)和聚酰胺6(PA6)包含不同数量的多壁碳纳米管(MWNT)的熔融加工过程中,进行了电导率和介电常数的研究。将几何形状法兰连接到双螺杆挤出机的出口,在不同的加工条件(熔融温度和生产量)下以及停止挤出机后,在21.5至10〜6 Hz的频率范围内测量交流电导率和相关的复介电常数。发现挤出开始时电导率下降到典型的基体聚合物值。停止挤出机后,电导率随时间增加多达八个数量级。在机械变形后的其余时间内电导率恢复为发现可以更快地提高熔体温度或具有更高CNT浓度的样品。电导率的提高静态熔体中的y可以通过对导电网络状填充物结构进行重组来解释,该结构在机械变形下至少被部分破坏了。机械变形后导电网络的重整动力学被认为是一个附聚过程,可以通过聚类聚合和渗滤理论的组合来近似。

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