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Electrical properties of crosslinked polyethylene/carbon black switching composites as a function of morphology and structure of the carbon black

机译:交联聚乙烯/炭黑转换复合材料的电性能与炭黑的形态和结构的关系

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摘要

The electrical resistivity of a radiation-crosslinked polyethylene/carbon black switching composite was investigated as a function of carbon black content and temperature. Carbon blacks of different morphology and microstructure behaved differently regarding the electrical resistivity. A HG black, highly porous and structured, imparts high conductivity to its composite mixture at a low degree of loading, whereas nonporous acetylene EQ black of like structure requires a higher degree of loading to impart the same conductivity. The PTC (positive temperature coefficient) effect anomaly was smaller for HG black than for EQ black. It was found that the PTC anomaly was heightened when a combination of the two different carbon blacks was mixed into the composites. Suggestions as to the causes for this particular behavior are made with reference to the electron micrography and other parameters for microstructure of the two carbon blacks.
机译:研究了辐射交联的聚乙烯/炭黑转换复合材料的电阻率与炭黑含量和温度的关系。就电阻率而言,不同形态和微观结构的炭黑表现出不同的行为。高度多孔且结构化的HG黑色在低负荷下为其复合混合物赋予高导电性,而结构相似的无孔乙炔EQ黑则需要较高的负荷才能赋予相同的导电性。 HG黑的PTC(正温度系数)效应异常小于EQ黑。发现将两种不同炭黑的混合物混入复合材料时,PTC异常加剧。关于这种特殊行为的原因的建议是参照电子显微照片和其他两种炭黑的微观结构参数提出的。

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