Citation:
	            
		            CHEN  Yang, WANG  Cheng-Guo, ZHAO  Wei. Fabrication of a Self-Healing Pure SiC Coating by a Two-Step Technique[J]. Acta Physico-Chimica Sinica,
							;2012, 28(01): 239-244.
						
							doi:
								10.3866/PKU.WHXB201228239
						
					
				
					
				
	        
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	                	A self-healing pure SiC coating was prepared on a carbon/carbon (C/C) composite by a two-step technique to protect the C/C composite from oxidation. First, SiC nanowires were obtained on the substrate surface by the thermal decomposition of hydrogen silicone oil (H-PSO). Second, a coating with a thickness of 100-200 μm was produced by infiltrating with silicon at high temperature in an ar n atmosphere. The morphology and phase composition of the coating were observed by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Oxidation tests were carried out on specimens and the results indicated that the obtained coating consisted of pure SiC and had a certain self-healing ability. The SiC self-healing coating significantly increased the antioxidant properties of the C/C composites and it protected the C/C composites from oxidation at 1400 °C in air over 4 h with a corresponding mass loss of only 0.71%.
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								Keywords:
								
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C/C composite
, - SiC nanowire,
 - SiC coating,
 - Oxidation resistance,
 - Self-healing
 
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                    [1]
                
			
(1) Li, C. Y.; Li, F. A. New Chemical Materials 2006, 34 (3), 18.[李翠云, 李辅安. 化工新型材料, 2006, 34 (3), 18.]
 - 
			
                    [2]
                
			
(2) He, F. Carbon Fiber and Its Application Technology; ChemicalIndustry Press: Beijing, 2004; pp 363-416. [贺福. 碳纤维及其应用技术. 北京: 化学工业出版社, 2004: 363-416.]
 - 
			
                    [3]
                
			
(3) Li, H. J. New Carbon Mater. 2001, 16 (2), 79. [李贺军. 新型炭材料, 2001, 16 (2), 79.]
 - 
			
                    [4]
                
			
(4) Huang, J. F.; Li, H. J.; Xiong, X. B.; Zeng, X. R.; Li, K. Z.; Fu,Y.W.; Huang, M. New Carbon Mater. 2005, 20 (4), 373. [黄剑锋, 李贺军, 熊信柏, 曾燮榕, 李克智, 付业伟, 黄敏. 新型炭材料, 2005, 20 (4), 373.]
 - 
			
                    [5]
                
			
(5) Guo,W. M.; Xiao, H. N. Carbon 2007, 45 (5), 1058.
 - 
			
                    [6]
                
			
(6) Hu, H. F.; Li, Y.W.; Chen, Z. H.; Feng, C. X.; Zhang, C. R.;Song, Y. C. Material Engineering 1997, No. 3, 7. [胡海峰,李彦武, 陈朝辉, 冯春祥, 张长瑞, 宋永才. 材料工程, 1997,No. 3, 7.]
 - 
			
                    [7]
                
			
(7) Yeo, S.; Kim, D. J.; Park, J.W. Int. J. Refract. Met. H. 2011, 29
 - 
			
                    [8]
                
			
(5), 582.
 - 
			
                    [9]
                
			
(8) Joinet, M. J.; Pouliquen, L.; Teyssandier, F.; Aliaga, D. Surf. Coat. Tech. 2008, 202 (11), 2252.
 - 
			
                    [10]
                
			
(9) Fu, Z. Q.; Tang, C. H.; Liang, T. X. Surf. Coat. Tech. 2006, 200
 - 
			
                    [11]
                
			
(12/13), 3950.
 - 
			
                    [12]
                
			
(10) Li, C. H.; Huang, K. L.; Li, X. D.; Cao, F.; Yu Y. X. Mater. Sci. Tech-Lond 2005, 13 (2), 222. [李春华, 黄可龙, 李效东, 曹峰, 余煌玺. 材料科学与工程2005, 13 (2), 222.]
 - 
			
                    [13]
                
			
(11) Liu, Z. J.; Guo, Q. G.; Liu, L.; Shi, J. L.; Zhai, G. T. Surf. Coat. Tech. 2008, 202 (13), 3094.
 - 
			
                    [14]
                
			
(12) Tang, C. H.; Guan, J. J. Nucl. Mater. 1995, 224 (1), 103.
 - 
			
                    [15]
                
			
(13) Zhao, J.;Wang, G.; Guo, Q. G.; Liu, L. Fusion Eng. Des. 2007,82 (4), 363.
 - 
			
                    [16]
                
			
(14) Huang, J. F.; Li, H. J.; Zeng, X. R.; Xiong, X. B.; Li, K. Z. Appl. Surf. Sci. 2006, 252 (12), 4244.
 - 
			
                    [17]
                
			
(15) Fu, Q. G.; Li, H. J.; Shi, X. H.; Liao, X. L.; Li, K. Z.; Huang, M.Appl. Surf. Sci. 2006, 252 (10), 3475.
 - 
			
                    [18]
                
			
(16) Smeacetto, F.; Ferraris, M.; Salvo, M. Carbon 2003, 41 (11),2105.
 - 
			
                    [19]
                
			
(17) Wang, Z.; Dai, Z.; Gao, R.; le, J. L. Appl. Phys. Lett. 2000, 77
 - 
			
                    [20]
                
			
(21), 3349.
 - 
			
                    [21]
                
			
(18) Zhou,W. M.; Yang, B.; Yang, Z. X.; Zhu, F.; Yan, L. J.; Zhang,Y. F. Appl. Surf. Sci. 2006, 252 (14), 5143.
 - 
			
                    [22]
                
			
(19) Yang,W. Y.; Miao, H. Z.; Xie, Z. P.; Zhang, L. G.; An, L. N.Chem. Phys. Lett. 2004, 383 (5/6), 441.
 - 
			
                    [23]
                
			
(20) Koumoto, K.; Takeda, S.; Pai, C. H.; Sato, T.; Yanagida, H.J. Am. Ceram. Soc. 1989, 72 (10), 1985.
 - 
			
                    [24]
                
			
(21) Seo,W. S.; Koumoto, K. J. Am. Ceram. Soc. 1998, 81 (5), 1255.
 - 
			
                    [25]
                
			
(22) Raman, V.; Bahl, O. P.; Dhawan, U. J. Mater. Sci. 1995, 30 (10),2686.
 - 
			
                    [26]
                
			
(23) Hourlier, D. B.; Latournerie, J.; Dempsey, P. J. Eur. Ceram. Soc.2005, 25 (7), 979.
 - 
			
                    [27]
                
			
(24) Ma, Q. S.; Chen, Z. H.; Zheng,W.W.; Hu, H. F. Journal of National University of Defense Technology 2001, 23 (5), 40.[马青松, 陈朝辉, 郑文伟, 胡海峰. 国防科技大学学报2001,23 (5), 40.]
 - 
			
                    [28]
                
			
(25) Choi, H. J.; Lee, J. G. J. Mater. Sci. 1995, 30 (8), 1982.
 - 
			
                    [29]
                
			
(26) Zhao, J.;Wang, G.; Liu, L.; Guo, Q. G. Atomic Energy Science and Technology 2008, 42 (4), 353. [赵娟, 王贵, 刘朗, 郭全贵. 原子能科学技术2008, 42 (4), 353.]
 
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