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碳纳米管与三维石墨烯协同提高导热硅脂的热性能
引用本文:安磊,刘琦,陈立飞,谢华清,于伟,王继芬.碳纳米管与三维石墨烯协同提高导热硅脂的热性能[J].上海第二工业大学学报,2020,37(1):31-37.
作者姓名:安磊  刘琦  陈立飞  谢华清  于伟  王继芬
作者单位:上海第二工业大学 环境与材料工程学院,上海201209;上海第二工业大学 文理学部,上海201209
基金项目:国家自然科学基金(51876112), 上海市自然科学基金(17ZR1410900), 上海第二工业大学研究生项目基金 (EGD18YJ0042) 资助
摘    要:以二甲基硅油为基础油,碳纳米管(carbon nanotubes, CNT)/三维石墨烯(3D graphene, 3D rGO)复合碳材料为导热填料制备导热硅脂。研究表明,仅以CNT为导热填料时,管径小而管长长的CNT更有利于改善硅脂热性能。当总导热填料量为6%, CNT/3D rGO复合碳材料中CNT和3D rGO质量比为3:1时,导热硅脂的热导率提高近26%。CNT的加入对3D rGO起到了分隔和桥连的作用,短而细的CNT更有利于三维热传导网络的形成,进而可提高导热硅脂的热传导性能。

关 键 词:碳纳米管  三维石墨烯  硅脂  导热性能

Carbon Nanotubes and 3D Graphene Synergistically Improving Thermal Conductivity of Silicone Grease
AN Lei,LIU Qi,CHEN Li-fei,XIE Hua-qing,YU Wei and WANG Ji-fen.Carbon Nanotubes and 3D Graphene Synergistically Improving Thermal Conductivity of Silicone Grease[J].Journal of Shanghai Second Polytechnic University,2020,37(1):31-37.
Authors:AN Lei  LIU Qi  CHEN Li-fei  XIE Hua-qing  YU Wei and WANG Ji-fen
Affiliation:a. School of Environmental and Materials Engineering;,a. School of Environmental and Materials Engineering;,a. School of Environmental and Materials Engineering;,a. School of Environmental and Materials Engineering;,a. School of Environmental and Materials Engineering; and b. College of Arts and Science, Shanghai Polytechnic University, Shanghai 201209, China
Abstract:Silicone grease based composite was prepared by using dimethyl silicone oil as the base oil, mixture of carbon nanotubes (CNT) and 3D graphene (3D rGO) as thermal conductive filler. The results show that when only CNTs were used as thermally conductive fillers, CNTs with small diameters and long tube length are more active to improve the thermal performance of silicone grease. When the total filling amount is 6% and the mass ratio of CNTs and 3D rGO in the composites is 3 : 1, the thermal conductivity of the silicone grease composite increases by nearly 26%. The addition of CNTs plays a role in separating and bridging 3D rGO. Short and thin CNTs are more active to the formation of a three-dimensional thermal conductive network, which can greatly improve the thermal conductivity of silicone grease composites.
Keywords:carbon nanotube  3D graphene  silicone grease  thermal conductive performance
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