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High Thermal Conductivity Polyethylene Pipe

机译:高导热聚乙烯管

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摘要

Composites of HDPE/graphite were prepared through blending high density polyethylene (HDPE) with surface activating treatment graphite by self-made compatibilizer and titanate coupling agent. It was studied that the kinds of matrix resin, coupling agent, compatibilizer and graphite particle size and its content effected on tensile strength, impact strength and microstructure of composites, especially, thermal conductivity. It showed that the higher thermal conductivity of matrix resin contributed to enhancing the system's thermal conductivity. Compatibilizer improved immensely compatibility of the system. Compared with spherical inorganic filler, scaly inorganic filler improved thermal conductivity. With the increase of graphite particle size, the tensile strength of composites was decreased slightly; nevertheless the thermal conductivity was greatly improved. The thermal conductivity of the composites obviously was increased with increasing content of graphite. When the content of graphite was 40phr, the thermal conductivity of composites reached the value of 1.198 W/m·K, which was increased 170% more than that of neat HDPE.
机译:HDPE /石墨复合材料是通过用自制的增容剂和钛酸酯偶联剂将高密度聚乙烯(HDPE)与表面活化处理石墨混合而成。研究了基体树脂,偶联剂,相容剂和石墨粒度的种类及其含量对复合材料的拉伸强度,冲击强度和微观结构,特别是导热性的影响。结果表明,较高的基体树脂导热系数有助于提高系统的导热系数。相容剂极大地改善了系统的相容性。与球形无机填料相比,鳞片状无机填料改善了导热性。随着石墨颗粒尺寸的增加,复合材料的拉伸强度略有下降。然而,导热率大大提高。随着石墨含量的增加,复合材料的导热系数明显增加。当石墨含量为40phr时,复合材料的热导率达到1.198 W / m·K,比纯HDPE高170%。

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