Microstructure and ablation properties of zirconium carbide doped carbon/carbon composites

材料科学 复合材料 化学气相渗透 微观结构 碳化锆 碳纤维 增强碳-碳 扫描电子显微镜 碳化物 复合数 冶金
作者
Xuetao Shen,Kezhi Li,Hejun Li,Haiyan Du,Weifeng Cao,Lan Fengtao
出处
期刊:Carbon [Elsevier BV]
卷期号:48 (2): 344-351 被引量:178
标识
DOI:10.1016/j.carbon.2009.09.035
摘要

Carbon/carbon composites doped with zirconium carbide were prepared by a three-step process. Carbon fiber felts were first immersed in a zirconium oxychloride solution, followed by rapid densification using thermal gradient chemical vapor infiltration. The densified carbon/carbon composites were then graphitized at 2500 °C. The phase composition and morphology of the composites were investigated by X-ray diffraction and scanning electron microscopy. The ablation properties were tested in an oxyacetylene torch. The results show that the linear and mass ablation rates of the composites after doping with 4.14 wt.% zirconium carbide decreased by 83.0% and 77.0%, respectively. The ablated surface of the carbon matrix for pure carbon/carbon composites was very smooth and glossy, while that for doped carbon/carbon composites was honeycombed and dim. The bonding between carbon fibers and matrix decreased because of the formation of more zirconium dioxide, resulting in carbon fibers peeling off the matrix and the ablation resistance of carbon fibers could not be brought into play when the zirconium carbide contents achieved 4.14 wt.%. Although mechanical denudation does not seem to play a dominant role, the ablation was mainly controlled by heterogeneous mass transfer.
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