复合材料
材料科学
热导率
压缩成型
复合数
多孔性
热传导
纤维
导电体
碳纤维
模具
作者
Shanshan Shi,Ying Wang,Tao Jiang,Xinfeng Wu,Bo Tang,Guangyin Yuan,Ning Zhong,Kai Sun,Yuantao Zhao,Wenge Li,Jinhong Yu
出处
期刊:ACS omega
[American Chemical Society]
日期:2022-08-12
卷期号:7 (33): 29433-29442
被引量:9
标识
DOI:10.1021/acsomega.2c03848
摘要
The formation of highly thermally conductive composites with a three-dimensional (3D) oriented structure has become an important means to solve the heat dissipation problem of electronic components. In this paper, a carbon fiber (CF) felt with a 3D network structure was constructed through the airflow netting forming technology and needle punching. The carbon fiber/phenolic composites were then fabricated by CF felt and phenolic resin through vacuum impregnation and compression molding. The effects of CF felt content and porosity on the thermal conductivity of carbon fiber/phenolic composites were investigated. The enhancement of carbon skeleton content promotes the conduction of heat inside the composites, and the decrease of porosity also significantly improves the thermal conductivity of the composites. The results indicate that the composites exhibit a maximum in-plane thermal conductivity of 1.3 W/mK, which is about 650% that of pure phenolic resin, showing that the construction of 3D thermal network structure is conducive to the reinforcement of thermal conductivity of composites. The method can provide a certain theoretical basis for constructing a thermally conductive composite with a three-dimensional structure.
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