首页> 外文期刊>Journal of Applied Polymer Science >High resistivity‐temperature effect of resistivity for economical and facile conductive polymer composites with low percolation threshold via self‐constructed dual continuous structure
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High resistivity‐temperature effect of resistivity for economical and facile conductive polymer composites with low percolation threshold via self‐constructed dual continuous structure

机译:通过自建的双连续结构,经济、便捷、低渗透阈值的导电聚合物复合材料的高电阻率-温度效应

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摘要

Abstract In this work, electrically conductive polyethylene/polypropylene‐flake graphite composites with different ratios (HDPE/PP‐FG) were prepared by simple mechanical blending (Mec) and melt blending (Mel) technologies, combining with the grinding technique. According to the effect of preparation technique, dual continuous microstructures for Mec‐HDPE/PP‐FG composites were self constructed by controlling specific molding temperature. As a result, the percolation threshold of 1.33 wt of Mec‐HDPE1/PP4‐FG was achieved, much lower than that of Mel‐HDPE1/PP4‐FG (7.02 wt) and the maximum in conductivity was over 10−3 S/m at about FG content of 6 wt. However, Mel‐HDPE1/PP4‐FG only showed the electrical conductivity of about 8.0 × 10−11 S/m when FG content was 6 wt. Meanwhile, Mec‐HDPE/PP‐FG composites presented obvious positive temperature coefficient (PTC) effect of electrical resistivity, without negative temperature coefficient (NTC) effect and PTC intensity was up to 6.57 orders of magnitude, far higher than those of Mel‐HDPE/PP‐FG composites. In addition, the excellent repeatability in PTC behaviors for Mec‐HDPE/PP‐FG was achieved after several run cycles. Therefore, the study on economical and facile polymer materials with high performance PTC characteristics had the great significance in practical application.
机译:摘要 采用简单机械共混(Mec)和熔融共混(Mel)技术,结合研磨技术制备了不同配比的导电聚乙烯/聚丙烯-鳞片石墨复合材料(HDPE/PP-FG)。根据制备工艺的影响,通过控制特定成型温度自构建Mec-HDPE/PP-FG复合材料的双重连续微观结构。结果,Mec-HDPE1/PP4-FG的渗流阈值为1.33 wt%,远低于Mel-HDPE1/PP4-FG的渗流阈值(7.02 wt%),在FG含量约为6 wt%时,电导率最大值超过10−3 S/m。然而,当FG含量为6 wt%时,Mel-HDPE1/PP4-FG的电导率仅为8.0 × 10−11 S/m。同时,Mec-HDPE/PP-FG复合材料表现出明显的电阻率正温度系数(PTC)效应,无负温度系数(NTC)效应,PTC强度高达6.57个数量级,远高于Mel-HDPE/PP-FG复合材料。此外,经过几个运行周期后,Mec-HDPE/PP-FG 的 PTC 行为具有出色的可重复性。因此,研究具有高性能PTC特性的经济、简便的高分子材料在实际应用中具有重要意义。

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