Please wait a minute...
Acta Metall Sin  2013, Vol. 49 Issue (11): 1433-1438    DOI: 10.3724/SP.J.1037.2013.00517
Current Issue | Archive | Adv Search |
FORMATION OF Ge-Y MODIFIED SILICIDE COATINGS ON Nb-Ti-Si BASE ULTRAHIGH TEMPERATURE ALLOY
YANG Lingxiao, GUO Xiping, QIAO Yanqiang, PAN Ruobing
State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an 710072
Cite this article: 

YANG Lingxiao, GUO Xiping, QIAO Yanqiang, PAN Ruobing. FORMATION OF Ge-Y MODIFIED SILICIDE COATINGS ON Nb-Ti-Si BASE ULTRAHIGH TEMPERATURE ALLOY. Acta Metall Sin, 2013, 49(11): 1433-1438.

Download:  PDF(1735KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  

Nb-Si base ultrahigh temperature alloy is a promising candidate for high temperature applications due to its high melting point, high strength and relatively low density at elevated temperatures. However, the poor oxidation resistance of this alloy has still be a major barrier to its high temperature applications. Ge and Y modified silicide coatings on an Nb-Ti-Si based ultrahigh temperature alloy have been prepared successfully by co-depositing Si, Ge and Y in order to improve its high temperature oxidation resistance. The structure, constituent phases and formation process of the coatings have been revealed using XRD, SEM and EDS. The results showed that the coatings had obvious layered structure which was composed of a (Nb, X)(Si, Ge)2 (X represents Ti, Cr and Hf elements) outer layer and a (Ti, Nb)5(Si, Ge)4 inner layer. The concentration of Ge in the coating increased with increase in the distance away from the coating surface. Compared with the single Y modified silicide coating, the addition of Ge did not change the coating structrue, but reduced the absorption and deposition of Si and retarded the coating growth. The coatings prepared at 1250℃ for different time (0-8 h) had similar structures and the coating growth kinetics followed a parabolic law.

Key words:  Nb-Ti-Si base ultrahigh temperature alloy      pack cementation process      silicide coating      Ge and Y modification      coating structure     
Received:  26 August 2013     

URL: 

https://www.ams.org.cn/EN/10.3724/SP.J.1037.2013.00517     OR     https://www.ams.org.cn/EN/Y2013/V49/I11/1433

[1] Ma C L, Kasama A, Tanaka R, Hanada S, Kang M K.  Trans Met Heat Treat, 2000; 21(2): 83

(马朝利, 笠间昭夫, 田中良平, 花田修治, 康沫狂. 金属热处理学报. 2000; 21(2): 83)
[2] Bewlay B P, Jackson M R, Lipsitt H A.  Metall Mater Trans, 1996; 27A: 3801
[3] Bewlay B P, Jackson M R, Zhao J C, Subramaniam P R.  Metall Mater Trans, 2003; 34A: 2043
[4] Kazuhiro I, Taisuke H, Masato Y, Hiroshi N.  Intermetallics, 2004; 12: 407
[5] Zhang P, Guo X P.  Acta Metall Sin, 2010; 46: 821
(张平, 郭喜平. 金属学报, 2010; 46: 821)
[6] Tatemoto K, Ono Y, Suzuki R O.  J Phys Chem Solids, 2005; 66: 526
[7] Xiao L R, Cai Z G, Yin L, Zhang L P, Xiang C W.  Rare Met Cement Carb, 2006; 34(2): 16
(肖来荣, 蔡志刚, 殷磊, 张利平, 向彩文. 稀有金属与硬质合金, 2006; 34(2): 16)
[8] Mueller A, Wang G, Rapp R A.   Mater Sci Eng, 1992; A155: 199
[9] Cockeram B V, Wang G, Rapp R A.  Mater Corros, 1995; 46: 207
[10] Cockeram B V, Rapp R A.  Mater Sci Eng, 1995; A192: 980
[11] Qi T, Guo X P.  J Inorg Mater, 2009: 24: 1219
(齐涛, 郭喜平. 无机材料学报, 2009; 24: 1219)
[12] Tian X D, Guo X P.  Surf Coat Technol, 2009; 203: 1161
[13] Zhao J C, Jackson M R, Peluso L A.  Mater Sci Eng, 2004; A372: 21
[14] Chiara M, Vincenzo B, Filippo M, Umberto A T.  Acta Mater, 2003; 51: 4837
[15] Colinet C, Tedenac J C.  Intermetallics, 2010; 18: 1444
[16] Fernandes P B, Coelho G C, Ferreira F, Nunes C A, Sundman B.  Intermetallics, 2002; 10: 993
[17] Prasad S, Paul A.  Acta Mater, 2011; 59: 1577
[18] Majumdar S, Sharma I, Samajdar I, Bhargavab P.  J Electrochem Soc, 2008; 12: D734
[19] Li M, Song L X, Le J, Song X P, Guo Z C.  J Inorg Mater, 2005; 20: 764
(李明, 宋立昕, 乐军, 宋学平, 郭占成. 无机材料学报, 2005; 20: 764)
[20] Li X, Guo X P.  Acta Metall Sin, 2012; 48: 1394
(李轩, 郭喜平. 金属学报, 2012; 48: 1394)
[1] LI Xiaofei, GUO Xiping. EUTECTIC MICROSTRUCTURE EVOLUTION OF DIRECTIONALLY SOLIDIFIED Nb-Ti-Si BASE ULTRAHIGH TEMPERATURE ALLOY[J]. 金属学报, 2013, 49(7): 853-862.
[2] ZHANG Ping GUO Xiping. EFFECTS OF Al ON Si-Al-Y2O3 CO-DEPOSITION COATINGS ON Nb-Ti-Si BASE ULTRAHIGH TEMPERATURE ALLOY[J]. 金属学报, 2010, 46(7): 821-831.
No Suggested Reading articles found!