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石墨烯导热纸研究进展 被引量:1
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作者 王兰喜 何延春 +2 位作者 王虎 吴春华 李林 《材料导报》 EI CAS CSCD 北大核心 2023年第3期139-147,共9页
由于依靠声子进行热传导的特性,石墨烯具有异乎寻常的高热导率。理论和实验研究均已证明,单层石墨烯的热导率可达5000 W·m^(-1)·K^(-1)以上,是目前已知热导率最高的一种材料。然而,单层石墨烯由于厚度薄、片径小等几何尺寸上... 由于依靠声子进行热传导的特性,石墨烯具有异乎寻常的高热导率。理论和实验研究均已证明,单层石墨烯的热导率可达5000 W·m^(-1)·K^(-1)以上,是目前已知热导率最高的一种材料。然而,单层石墨烯由于厚度薄、片径小等几何尺寸上的原因而很难在宏观尺度上获得实际应用。得益于化学方法制备高质量石墨烯粉体的快速发展,将石墨烯粉体制备成柔性的高导热石墨烯纸是近几年的热点研究方向之一。虽然石墨烯纸的面内热导率已经能够达到1000 W·m^(-1)·K^(-1)以上,但与单层石墨烯的热导率仍存在较大的差距,且纵向热导率低。近几年,科研人员从大尺寸石墨烯粉体的采用、石墨烯纸微观结构的优化、还原处理方法的改进、石墨烯与其他物质混合等方面进行了研究,在提高石墨烯纸的热导率上取得了比较显著的效果。本文综述了有关石墨烯纸的研究进展,介绍了石墨烯纸的制备方法,并分析影响石墨烯纸热导率的因素,讨论增强石墨烯纸热导率的方法,总结了提高石墨烯纸热导率的研究思路和发展趋势,最后展望了石墨烯纸在热管理领域的应用。 展开更多
关键词 石墨烯 石墨烯纸制备方法 热导率影响因素 管理应用
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Quantitative analysis on influencing factors for interface propagation-based thermal conductivity measurement method during solid-liquid transition 被引量:1
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作者 ZHOU Tian MA Xiao-yi +1 位作者 LIU Xu LI Yuan 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第8期2041-2055,共15页
The recently proposed interface propagation-based method has shown its advantages in obtaining the thermal conductivity of phase change materials during solid-liquid transition over conventional techniques. However, i... The recently proposed interface propagation-based method has shown its advantages in obtaining the thermal conductivity of phase change materials during solid-liquid transition over conventional techniques. However, in previous investigation, the analysis on the measurement error was qualitative and only focused on the total effects on the measurement without decoupling the influencing factors. This paper discusses the effects of influencing factors on the measurement results for the interface propagation-based method. Numerical simulations were performed to explore the influencing factors, namely model simplification, subcooling and natural convection, along with their impact on the measurement process and corresponding measurement results. The numerical solutions were provided in terms of moving curves of the solid-liquid interface and the predicted values of thermal conductivity. Results indicated that the impact of simplified model was strongly dependent on Stefan number of the melting process. The degree of subcooling would lead to underestimated values for thermal conductivity prediction. The natural convection would intensify the heat transfer rate in the liquid region, thereby overestimating the obtained results of thermal conductivity. Correlations and experimental guidelines are provided. The relative errors are limited in ±1.5%,±3%and ±2% corresponding to the impact of simplified model, subcooling and natural convection, respectively. 展开更多
关键词 phase change material thermal conductivity measurement influencing factor interface propagation-based method numerical simulation
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