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Si-Al-Ir Oxidation Resistant Coating for Carbon/Carbon Composites by Slurry Dipping 被引量:2

Si-Al-Ir Oxidation Resistant Coating for Carbon/Carbon Composites by Slurry Dipping
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摘要 A Si-Al-lr oxidation resistant coating was prepared for SiC coated carbon/carbon composites by slurry dipping. The phase composition, microstructure and oxidation resistance of the as-prepared Si-Al-lr coating were studied by XRD (X-ray diffraction), SEM (scanning electron microscopy), and isothermal oxidation test at 1773 K in air, respectively. The surface of the as-prepared Si-Al-lr coating was dense and the thickness was approximately 100 um. Its anti-oxidation property was superior to that of the inner SiC coating. The weight loss of SiC/Si- Al-lr coated carbon/carbon composites was less than 5 wt. pct after oxidation at 1773 K in air for 79 h. The local oxidation defects in the coating may result in the failure of the SiC/Si-Al-Ir coating. A Si-Al-lr oxidation resistant coating was prepared for SiC coated carbon/carbon composites by slurry dipping. The phase composition, microstructure and oxidation resistance of the as-prepared Si-Al-lr coating were studied by XRD (X-ray diffraction), SEM (scanning electron microscopy), and isothermal oxidation test at 1773 K in air, respectively. The surface of the as-prepared Si-Al-lr coating was dense and the thickness was approximately 100 um. Its anti-oxidation property was superior to that of the inner SiC coating. The weight loss of SiC/Si- Al-lr coated carbon/carbon composites was less than 5 wt. pct after oxidation at 1773 K in air for 79 h. The local oxidation defects in the coating may result in the failure of the SiC/Si-Al-Ir coating.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2009年第3期344-346,共3页 材料科学技术(英文版)
基金 supported by the National "973"Project under grant No. 2006CB600908
关键词 Carbon/carbon composites COATINGS OXIDATION Si-Al-Ir Carbon/carbon composites Coatings Oxidation Si-Al-Ir
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  • 1G. Savage: Carbon-carbon Composites, Chapman &: Hall, London, 1993, 198-209.
  • 2J.D. Buckley: Am. Ceram. Soc. Bull., 1988, 67(2), 364.
  • 3J.E. Sheehan, K.W. Buesking and B.J. Sullivan: Rev. Mater. Sci., 1994; 24, 19.
  • 4H. Hideki, M. Shuichi and H. Shuji: Intermetallics, 2000, 8(9-11), 1081.
  • 5H.T. Fang, J.H. Jeon, J.C. Zhu and Z.D. Yin: Carbon, 2002, 40(14), 2559.
  • 6W.L. Worrell and K.N. Lee: United States Patent 6.127.047, 2000.
  • 7Q.G. Fu, H.J. Li, X.H. Shi, K.Z. Li and G.D. Sun: Scripta Mater., 2005, 52(9), 923.
  • 8J.F. Huang, X.R. Zeng, H.J. Li, X.B. Xiong and M. Huang: Carbon, 2004, 42(8-9), 1517.
  • 9D.S. Hou, K.Z. Li, H.J. Li, Q.G. Fu, J. Wei and Y.L. Zhang: J. Mater. Sci. Technol., 2007, 23(4), 559.
  • 10A. Joshi and J.S. Lee: Compos. Part A-Appl. S., 1997, 28(2), 181.

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