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Resistivity relaxation behavior of carbon black filled high-density polyethylene conductive composites

机译:炭黑填充高密度聚乙烯导电复合材料的电阻率松弛行为

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摘要

The variation of resistivity for high-density polyethylene (HDPE) conductive composites filled with carbon black (CB) with time was investigated under the excitation of different temperature field. The movement of CB particles in the HDPE matrix was not a momentary equilibrium process, but a relaxation process. The relaxation of resistivity of the composites was monotonic, and it could be described by an exponential form above melting temperature. However, the relaxation of resistivity was nonmonotonic below melting temperature, herein a parameter t_0 which was the beginning time of the resistivity attenuation could be introduced into the exponential equation. The attenuation of resistivity at constant temperature was limited for the composites with certain content of CB. The resistivity of the composites would incline to a constant value with the prolongation of time no matter what the heat treatment temperature was. Heating rate had influence on the relaxation of resistivity of the composites, and the lower heating velocity resulted in less time to approach to the equilibrium resistivity.
机译:研究了在不同温度场的激励下,炭黑(CB)填充的高密度聚乙烯(HDPE)导电复合材料的电阻率随时间的变化。 HDB基质中CB颗粒的移动不是瞬时平衡过程,而是松弛过程。复合材料的电阻率松弛是单调的,并且可以通过高于熔融温度的指数形式来描述。然而,电阻率的松弛在熔融温度以下是非单调的,此处可以将作为电阻率衰减的开始时间的参数t_0引入到指数方程中。对于具有一定含量的CB的复合材料,在恒定温度下电阻率的衰减受到限制。无论热处理温度如何,随着时间的延长,复合材料的电阻率都将趋于恒定。加热速率对复合材料的电阻率松弛有影响,而较低的加热速度导致接近平衡电阻率的时间减少。

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