首页> 外文期刊>Journal of Applied Polymer Science >Multilayered ultrahigh molecular weight polyethylene/natural graphite/boron nitride composites with enhanced thermal conductivity and electrical insulation by hot compression
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Multilayered ultrahigh molecular weight polyethylene/natural graphite/boron nitride composites with enhanced thermal conductivity and electrical insulation by hot compression

机译:多层超高分子量聚乙烯/天然石墨/氮化硼复合材料,热压力增强导热性和电绝缘

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摘要

A scalable strategy to fabricate thermally conductive but electrically insulating polymer composites was urgently required in various applications including heat exchangers and electronic packages. In this work, multilayered ultrahigh molecular weight polyethylene (UHMWPE)/natural graphite (NG)/boron nitride (BN) composites were prepared by hot compressing the UHMWPE/NG layers and UHMWPE/BN layers alternately. Taking advantage of the internal properties of NG and BN fillers, the UHMWPE/NG layers played a decisive role in enhancing thermal conductivity (TC), while the UHMWPE/BN layers effectively blocked the electrically conductive pathways without affecting the thermal conductive pathways. The in-plane TC, electrical insulation, and heat spreading ability of multilayered UHMWPE/NG/BN composites increased with the increasing layer numbers. At the total fillers loading of 40 wt%, the in-plane TC of multilayered UHMWPE/NG/BN composites with nine layers was markedly improved to 6.319 Wm(-1) K-1, outperforming UHMWPE/BN (4.735 Wm(-1) K-1) and pure UHMWPE (0.305 Wm(-1) K-1) by 33.45% and 1971.80%, respectively. Meanwhile, the UHMWPE/NG/BN composites still maintained an excellent electrically insulating property (volume resistance similar to 5.40 x 10(14) Omega cm; breakdown voltage similar to 1.52 kV/mm). Moreover, the multilayered UHMWPE/NG/BN composites also exhibited surpassing heat dissipation capability and mechanical properties. Our results provided an effective method to fabricate highly thermal conductive and electrical insulating composites.
机译:在包括热交换器和电子封装在内的各种应用中,迫切需要一种可扩展的策略来制造导热但电绝缘的聚合物复合材料。本工作通过交替热压UHMWPE/NG层和UHMWPE/BN层,制备了多层超高分子量聚乙烯(UHMWPE)/天然石墨(NG)/氮化硼(BN)复合材料。利用NG和BN填料的内部特性,UHMWPE/NG层在提高导热性(TC)方面起到了决定性的作用,而UHMWPE/BN层在不影响导热通路的情况下有效地阻断了导电通路。随着层数的增加,多层UHMWPE/NG/BN复合材料的面内TC、电绝缘和散热能力增加。在总填充量为40%时,九层UHMWPE/NG/BN多层复合材料的面内TC显著提高至6.319 Wm(-1)K-1,分别比UHMWPE/BN(4.735 Wm(-1)K-1)和纯UHMWPE(0.305 Wm(-1)K-1)高33.45%和1971.80%。同时,UHMWPE/NG/BN复合材料仍然保持了优异的电绝缘性能(体积电阻类似于5.40 x 10(14)Ω-cm;击穿电压类似于1.52 kV/mm)。此外,多层UHMWPE/NG/BN复合材料还表现出了优异的散热性能和力学性能。我们的研究结果为制备高导热和电绝缘复合材料提供了一种有效的方法。

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