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High thermal conductivity graphite nanoplatelet/UHMWPE nanocomposites

机译:高导热石墨纳米片/ UHMWPE纳米复合材料

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High thermal conductivity graphite nanoplatelet/ultra-high molecular weight polyethylene (GNPs/ UHMWPE) nanocomposites are fabricated via mechanical ball milling followed by a hot-pressing method. The GNPs are located at the interface of the UHMWPE matrix. The thermal conductivity coefficient of the GNPs/UHMWPE nanocomposite is greatly improved to 4.624 W m(-1) K-1 with 21.4 vol% GNPs, 9 times higher than that of the original UHMWPE matrix. The significantly high improvement of the thermal conductivity is ascribed to the formation of multidimensional thermally conductive GNPs-GNPs networks, and the GNPs have a strong ability to form continuous thermally conductive networks. The method of cooling-pressing on the machine is more beneficial for the improvement of the thermal conductivity, by increasing the crystallinity of the UHMWPE matrix. Furthermore, the thermal stabilities of the GNPs/UHMWPE nanocomposites are increased with increasing addition of GNPs.
机译:高热导率石墨纳米片/超高分子量聚乙烯(GNPs / UHMWPE)纳米复合材料是通过机械球磨和热压方法制成的。 GNP位于UHMWPE矩阵的界面。 GNPs / UHMWPE纳米复合材料的导热系数大大提高到4.624 W m(-1)K-1,GNPs为21.4%,比原始UHMWPE基质的导热系数高9倍。导热性的显着高改善归因于多维导热GNP-GNP网络的形成,并且GNP具有形成连续导热网络的强大能力。通过增加UHMWPE基体的结晶度,在机器上进行冷压的方法对提高导热性更有利。此外,GNP / UHMWPE纳米复合材料的热稳定性随GNP添加量的增加而增加。

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