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Electrical behavior of carbon black‐filled polymer composites: Effect of interaction between filler and matrix

机译:炭黑填充聚合物复合材料的电学行为:填料与基体相互作用的影响

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AbstractThe effect of interaction between carbon black and polymer on electrical behavior was studied using the ESR method. The polymer matrices used were HDPE, LDPE, and ethylene/vinyl acetate (EVA). Two kinds of carbon blacks (CB), high structure CSF‐III and low structure FEF, were used as a conductive filler. Compared to that of the HDPE/FEF compound, the positive temperature coefficient (PTC) intensity is lower and electrical reproducibility is worse for the HDPE/CSF‐III compound; however, it can be improved significantly by radiation cross‐linking. On the other hand, the cross‐linking has no practical effect on the PTC intensity of the LDPE/CSF‐III compound while it can be achieved by mixing the compound for a longer time. The great PTC intensity was obtained in the HDPE/EVA/CSF‐III compound, and it is greater than that of HDPE/CSF‐III or EVA/CSF‐III. We explain these results using the concept of interaction between the filler and matrix. The absorption of the polymer on the carbon black surface may be physical or chemical; the latter is caused by the free‐radical reaction between the polymer and carbon black, and it can occur during the radiation or preparation process of the compound. These “bound polymers” are essentially important for materials to have a great PTC intensity and good reproducibility. © 199
机译:摘要 采用ESR方法研究了炭黑与聚合物相互作用对电行为的影响。使用的聚合物基质是HDPE、LDPE和乙烯/醋酸乙烯酯(EVA)。采用高结构CSF-III和低结构FEF两种炭黑(CB)作为导电填料。与HDPE/FEF化合物相比,HDPE/CSF-III化合物的正温度系数(PTC)强度较低,电重现性较差;然而,它可以通过辐射交联显着改善。另一方面,交联对LDPE/CSF-III化合物的PTC强度没有实际影响,而可以通过长时间混合该化合物来实现。HDPE/EVA/CSF-III化合物的PTC强度较高,且大于HDPE/CSF-III或EVA/CSF-III。我们用填料和基质之间相互作用的概念来解释这些结果。聚合物在炭黑表面的吸收可以是物理的,也可以是化学的;后者是由聚合物和炭黑之间的自由基反应引起的,它可能发生在化合物的辐射或制备过程中。这些“结合聚合物”对于材料具有很高的PTC强度和良好的再现性至关重要。© 199

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