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Nonlinear conductive proper ties and scaling behavior of conductive particle filled high-density polyethylene composites

机译:导电颗粒填充高密度聚乙烯复合材料的非线性导电性能和结垢行为

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摘要

The blends prepared by incorporation of carbon black (CB) or graphite powder (GP) into high-density polyethylene (HDPE) matrix have been novel and extensively applied polymeric positive temperature coefficient (PTC) composites. A phenomenological model was proposed on the basis of the GEM equation and the dilution effect of filler volume fraction due to the thermal volume expansion of the polymer matrix. Accordingly, the contribution of the thermal expansion of the matrix to the jump-like PTC transition of the composites was quantitatively estimated and a mechanical explanation was given. It was proved that the contribution of the volume expansion to PTC effect decreased for HDPE/CB composites crosslinked through electron-beam irradiation. Furthermore, the influences of the filler content, temperature and crosslinking on the self-heating behavior as well as the nonlinear conduction characteristics at electrical-thermal equilibrium state were examined. Based on the electric-field and initial resistivity dependence of the self-heating temperature and resistance dependence of the critical field, the mechanisms of the self-heating of the polymeric PTC materials were evaluated. The intrinsic relations between macroscopic electrical properties and microscopic percolation network at electrical-thermal equilibrium state were discussed according to the scaling relationship between the self-heating critical parameter and the conductivity of materials.
机译:通过将炭黑(CB)或石墨粉(GP)掺入高密度聚乙烯(HDPE)基体中制备的共混物是新颖且广泛应用的聚合物正温度系数(PTC)复合材料。基于GEM方程和由于聚合物基体的热体积膨胀引起的填料体积分数的稀释效应,提出了一种现象学模型。因此,定量地估计了基体的热膨胀对复合材料的跳跃状PTC转变的贡献,并给出了力学解释。证明了通过电子束辐照交联的HDPE / CB复合材料,体积膨胀对PTC效应的贡献减小。此外,研究了填料含量,温度和交联对自热行为以及电热平衡状态下非线性传导特性的影响。基于自加热温度的电场和初始电阻率依赖性以及临界场的电阻依赖性,评估了聚合物PTC材料自加热的机理。根据自热临界参数与材料电导率的比例关系,探讨了电热平衡状态下宏观电学性质与微观渗流网络的内在联系。

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