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High Thermal Conductivity of Flake Graphite Reinforced Polyethylene Composites Fabricated by the Powder Mixing Method and the Melt-Extruding Process

机译:通过粉末混合方法和熔融挤出工艺制造的薄片石墨增强聚乙烯复合材料的高导热系数

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摘要

The thermal conductivity of flake graphite (FG) particulates reinforced high density polyethylene (HDPE) composites was systematically investigated under a special dispersion state of FG particles. The effects of particle size, weight filling ratio and proportion of various sizes were discussed in detail. A special composite (15 wt % 500 μm/10 wt % 200 μm/10 wt % 20 μm/5 wt % 2 μm FG + 60 wt % polyethylene (PE)) with a high thermal conductivity about 2.49 W/(m·K) was produced by combining the synergistic effect of several fillers. The component material size distribution was employed to analyze the effect of particle size. And scanning electron microscope (SEM) was adopted to observe the FG network in the composites. Thermogravimetric analysis (TGA) revealed the good thermal stability of composites. Differential scanning calorimetry (DSC) indicated that all composites own a similar melting temperature. Sample compression experiment indicated that all composites still exhibit high mechanical strength. Consequently, the easy-making flake graphite reinforced polyethylene composites with a high thermal conductivity would have a wide application in the new material field, such as a thermal interface material, a heat exchanger, voltage cable, etc.
机译:在FG颗粒的特殊分散状态下系统地研究了片状石墨(FG)颗粒颗粒的导热率增强的高密度聚乙烯(HDPE)复合材料。详细讨论了粒度,重量填充率和各种尺寸比例的影响。特殊复合材料(15wt%500μm/ 10wt%200μm/ 10wt%20μm/ 5wt%2μmfg + 60wt%聚乙烯(PE),具有高导热率约为2.49w /(m·k通过组合几种填料的协同效应来制备。采用组分材料尺寸分布分析粒径的效果。采用扫描电子显微镜(SEM)观察复合材料中的FG网络。热重分析(TGA)揭示了复合材料的良好热稳定性。差分扫描量热法(DSC)表明所有复合材料都拥有类似的熔化温度。样品压缩实验表明所有复合材料仍然表现出高机械强度。因此,具有高导热率的易制备的片状石墨增强聚乙烯复合材料在新材料场中具有广泛的应用,例如热界面材料,热交换器,电压电缆等。

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