The through-thickness thermal conductivity and heat transport mechanism of carbon fiber three-dimensional orthogonal woven fabric composite

热导率 材料科学 复合材料 复合数 织物 纱线 机织物 热的 纤维 热传导 导电体 平纹织物 碳纤维 热力学 物理
作者
Yuwei Li,Lei Li,Yuanyuan Li,Hailou Wang,Ping Wang,Yan Zhang
出处
期刊:Journal of The Textile Institute [Informa]
卷期号:115 (2): 308-315 被引量:4
标识
DOI:10.1080/00405000.2023.2201029
摘要

AbstractThis paper successfully constructed a high through-thickness thermal conductivity carbon fiber composite with three-dimensional orthogonal woven fabric (3DOWF) by taking advantage of the high conductivity of carbon fiber. The effect of structural parameters and Z-direction bundling yarn (Z-yarn) on thermal conductivity (TC) was investigated, and thermal transport mechanism was analyzed. The results show that the TC in the through-thickness direction of 3DOWFs increase dramatically after adding Z-yarn structure, reaching up to 4.12 W/m/K, which is 116% higher than the laminated sample. A plane heat source was established to record the temperature-time curves of the composites, and results show that the composites with higher TC have faster equilibrium time and higher equilibrium temperature. Infrared thermography demonstrates the difference of thermal response process between 3DOWF and laminated material. To sum up, a large amount of heat energy can be transferred rapidly from hot surface to cold one through these Z-yarn paths in the thermal conductive network of 3DOWF, which has potential application in composite with high thermal conductivity.Keywords: Carbon fibersthree-dimensional orthogonal woven fabricthermal propertieslaser flash method Disclosure statementNo potential conflict of interest was reported by the authors.Additional informationFundingThe work is gratefully supported by Major Project of Natural Science Research of Jiangsu Higher Education Institutions (22KJA540002), Science and Technology Guiding Project of China National Textile and Apparel Council (Grant No. 2020064), Foundation Project of Jiangsu Advanced Textile Engineering Technology Center (Grant No. XJFZ/2021/3).
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