关于 C/SiC 复合薄板各向异性导热性的实验研究

Ke-Fan Wu, Hu Zhang, Gui-Hua Tang
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摘要

由于各向异性的纤维和结构分布,纤维增强复合材料具有各向异性的机械和传热性能。对于 C/SiC 复合材料,人们主要研究其平面外的热导率,而平面内的热导率因其厚度有限而较少关注。本研究采用瞬态平面源方法的板坯模块来测量二维平织 C/SiC 复合材料板坯的面内导热系数,并首次对测试的不确定性进行了数值分析。数值研究证明,板坯模块可以可靠地测量面内导热系数大于 10 W-m-1-K-1 的各向同性和各向异性板坯。通过结合激光闪光分析方法测量面外热导率,获得了二维平织 C/SiC 复合板坯在 20℃-900℃ 温度范围内的各向异性热导率。结果表明,C/SiC 复合材料的面外热导率随温度升高而降低,面内热导率随温度升高先升高后降低,面内热导率与面外热导率之比介于 2.2-3.1 之间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigation on the anisotropic thermal conductivity of C/SiC composite thin slab
Due to the anisotropic fibers and structure distribution, fiber-reinforced composites possess anisotropic mechanical and heat transfer properties. For C/SiC composites, the out-of-plane thermal conductivity was mainly studied whereas the in-plane thermal conductivity received less attentions due to its limited thickness. In this study, the slab module of transient plane source method is adopted to measure the in-plane thermal conductivity of 2D plain woven C/SiC composite slab and the test uncertainty is analyzed numerically for the first time. The numerical investigation proves that the slab module is reliable for measuring the isotropic and anisotropic slabs with in-plane thermal conductivity greater than 10 W·m-1·K-1. The anisotropic thermal conductivity of 2D plain woven C/SiC composite slab is obtained within the temperature range of 20℃-900℃ by combining with the laser flash analysis method to measure the out-of-plane thermal conductivity. The results demonstrate that the out-of-plane thermal conductivity of C/SiC composite decreases with temperature while its in-plane thermal conductivity increases with temperature first and then decreases, and the ratio of in-plane thermal conductivity to out-of-plane thermal conductivity is within 2.2-3.1.
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