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Synergistic effect of conductive carbon black and silica particles for improving the pyroresistive properties of high density polyethylene composites

机译:导电炭黑和二氧化硅颗粒对改善高密度聚乙烯复合材料热阻性能的协同作用

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摘要

Smart heating devices, assembled by the conductive polymer composites (CPCs) with positive temperature coefficient (PTC), have been wildly used in automobile, spacecraft, smart building, due to their outstanding self-regulating performances. Unfortunately, the intrinsic drawbacks of CPCs such as resistance instability and poor PTC reproducibility vastly restrict the prosperity of smart heaters. Herein, a facile and valid strategy based on doping silica nanoparticles in conductive carbon black (CB)/high density polyethylene (HDPE) composites is proposed to enhance the comprehensive PTC properties. The synergistic effect of conductive CB and silica, evidenced by the simultaneously enhancement of the conductivity, resistance stability and PTC reproducibility of Silica/CB/HDPE composites, has been demonstrated as the content of silica reaching 3.0 vol % when CB loading is just above its percolation threshold. Our morphology studies suggest that this effect is attributed to the improved dispersion of CB with the intercalation of silica particles. It is believed that this work offers a facile and low cost method for fabrication of high-performance self-regulated heating material.
机译:由具有正温度系数(PTC)的导电聚合物复合材料(CPC)组装而成的智能加热装置,因其出色的自调节性能而广泛用于汽车,航天器,智能建筑。不幸的是,CPC的固有缺点,例如电阻不稳定和PTC再现性差,极大地限制了智能加热器的繁荣。本文提出了一种在导电炭黑(CB)/高密度聚乙烯(HDPE)复合材料中掺杂二氧化硅纳米粒子的简便有效的策略,以提高其综合PTC性能。导电CB和二氧化硅的协同作用已得到证明,同时提高了Silica / CB / HDPE复合材料的电导率,电阻稳定性和PTC重现性,证明了当CB负载刚好高于其含量时,二氧化硅的含量达到3.0 vol%渗滤阈值。我们的形态学研究表明,这种影响归因于CB分散性的提高以及二氧化硅颗粒的嵌入。相信这项工作为制造高性能自调节加热材料提供了一种简便而低成本的方法。

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