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具有石墨烯纳米片几何特征的聚合物复合材料的热导率。

Thermal conductivity of polymer composites with the geometrical characteristics of graphene nanoplatelets.

机构信息

Mutifunctional Structural Composite Research Centre, Institute of Advanced Composite Materials, Korea Institute of Science and Technology (KIST), 92, Chudong-ro, Bongdong-eup, Wanju-gun, Jeonbuk, 55324, Republic of Korea.

出版信息

Sci Rep. 2016 May 25;6:26825. doi: 10.1038/srep26825.

Abstract

One of the most important physical factors related to the thermal conductivity of composites filled with graphene nanoplatelets (GNPs) is the dimensions of the GNPs, that is, their lateral size and thickness. In this study, we reveal the relationship between the thermal conductivity of polymer composites and the realistic size of GNP fillers within the polymer composites (measured using three-dimensional (3D) non-destructive micro X-ray CT analysis) while minimizing the effects of the physical parameters other than size. A larger lateral size and thickness of the GNPs increased the likelihood of the matrix-bonded interface being reduced, resulting in an effective improvement in the thermal conductivity and in the heat dissipation ability of the composites. The thermal conductivity was improved by up to 121% according to the filler size; the highest bulk and in-plane thermal conductivity values of the composites filled with 20 wt% GNPs were 1.8 and 7.3 W/m·K, respectively. The bulk and in-plane thermal conductivity values increased by 650 and 2,942%, respectively, when compared to the thermal conductivity values of the polymer matrix employed (0.24 W/m·K).

摘要

与填充石墨烯纳米片(GNPs)的复合材料的导热系数相关的最重要的物理因素之一是 GNPs 的尺寸,即其横向尺寸和厚度。在这项研究中,我们揭示了聚合物复合材料的导热系数与聚合物复合材料中 GNP 填料的实际尺寸(使用三维(3D)无损微 X 射线 CT 分析测量)之间的关系,同时将尺寸以外的物理参数的影响最小化。GNPs 的较大横向尺寸和厚度增加了基体结合界面减少的可能性,从而有效提高了复合材料的导热系数和散热能力。根据填料尺寸,导热系数提高了 121%;填充 20wt%GNPs 的复合材料的体积和平面热导率分别高达 1.8 和 7.3 W/m·K。与所使用的聚合物基质的热导率(0.24 W/m·K)相比,体积和平面热导率分别提高了 650%和 2942%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5449/4879581/c33151f76304/srep26825-f1.jpg

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