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首页> 外文期刊>Journal of Applied Polymer Science >Reduced percolation concentration in polypropylene/expanded graphite composites: Effect of viscosity and polypyrrole
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Reduced percolation concentration in polypropylene/expanded graphite composites: Effect of viscosity and polypyrrole

机译:降低聚丙烯/膨胀石墨复合材料的渗滤浓度:粘度和聚吡咯的影响

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With the goal to obtain material combining electrical and thermal conductivity at low filler loadings, composites based on polypropylenes (PP) and expanded graphite (EG) have been prepared. The effects of matrix viscosity and of coating the EG particles with polypyrrole (PPy, EG/PPy=37.5/62.5 by weight) on the EG dispersibility and formation of percolation structures have been analyzed. When increasing the EG amount from 6 to 8 wt %, the electrical conductivity of PP/EG composites increased by 7-9 orders of magnitude, independent of matrix viscosity. When EG-PPy is added, percolation was observed between 8 and 12 wt % EG-PPy (3 and 4.5 wt % EG) in case of PP with higher viscosity and 6 wt % EG (2.25 wt % EG) in case of PP with lower viscosity, exhibiting a strong synergistic effect of EG and PPy in the latter case. In contrast, PPy does not contribute to reduction of thermal percolation concentration. Thermal percolation is observed at 8 wt % EG in PP/EG composites, but no percolation was found in PP/EG-PPy composites with EG-PPy contents of up to 20 wt %, corresponding to 7.5 wt % EG. Analyzing the melt rheology it becomes clear that the contribution of PPy to the formation of a filler network is strongly dependent on the matrix viscosity. The comparison of thermal, electrical and rheological percolation reveals that PPy participates in electron transport reducing the electrical percolation but not to heat transport. Overall, we found a good correlation between electrical, thermal, and melt rheological percolation concentrations. (c) 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 41994.
机译:为了在低填充量下获得兼具导电性和导热性的材料,已经制备了基于聚丙烯(PP)和膨胀石墨(EG)的复合材料。分析了基体粘度和用聚吡咯(PPy,EG / PPy = 37.5 / 62.5重量)涂覆EG颗粒对EG分散性和渗滤结构形成的影响。当EG含量从6wt%增加到8wt%时,PP / EG复合材料的电导率增加7-9个数量级,而与基质粘度无关。当添加EG-PPy时,对于具有较高粘度的PP,观察到8%至12 wt%EG-PPy(3至4.5 wt%EG)之间的渗滤,而对于具有45%的PP,则观察到渗滤。较低的粘度,在后一种情况下表现出很强的EG和PPy协同作用。相反,PPy不会有助于降低热渗透浓度。在PP / EG复合材料中,当EG含量为8 wt%时,观察到热渗滤,但在EG-PPy含量不超过20 wt%(相当于7.5 wt%EG)的PP / EG-PPy复合材料中未发现渗滤。通过分析熔体流变学,可以清楚地看到PPy对填料网络形成的贡献在很大程度上取决于基体粘度。热,电和流变渗流的比较表明,PPy参与电子传输,从而减少了电渗流,但不参与热传输。总体而言,我们发现电,热和熔体流变渗流浓度之间具有良好的相关性。 (c)2015 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,41994。

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