INTER-DIFFUSION BEHAVIOR OF RECOATED CoCrAlY COATING/DZ125 DIRECTIONALLY SOLIDIFIED SUPERALLOY

  • QIN Lei ,
  • PENG Hui ,
  • GUO Hongbo ,
  • GONG Shengkai ,
  • XU Huibin
Expand
  • School of Materials Science and Engineering, Beihang Unviersity, Beijing 100191

Received date: 2012-09-11

  Revised date: 2012-11-13

  Online published: 2013-02-11

Abstract

The thermal barrier coatings (TBCs) are widely used in gas turbines which could lower the surface operating temperature and improve the service life of the coated part component. When repair or refurbishment of these coated components, it is necessary to remove the coating and replace it with a new coatings. The CoCrAlY coatings were deposited by EB-PVD on the directionally solidified nickel-based superalloy DZ125. The coatings were removed via physical methods in varying thicknesses and recoated subsequently. The results showed that the depth of the removal had a significant impact on the inter-diffusion behavior as well as the oxidation resistance. The thickness of Al-depleted zone formed in the recoated coatings after oxidation are thinner than the first coated coatings. Moreover, the more the coating was removed, the thinner the Al-depleted zone was formed. The recoated coatings deposited on the substrate removed the entirely inter-diffusion zone (IDZ) showed the best oxidation resistance, and the IDZ formed after oxidation was similar to the first coated coatings.

Cite this article

QIN Lei , PENG Hui , GUO Hongbo , GONG Shengkai , XU Huibin . INTER-DIFFUSION BEHAVIOR OF RECOATED CoCrAlY COATING/DZ125 DIRECTIONALLY SOLIDIFIED SUPERALLOY[J]. Acta Metall Sin, 2013 , 49(2) : 229 -235 . DOI: 10.3724/SP.J.1037.2012.00532

References

[1] Xu H B, Guo H B. Thermal Barrier Coatings. Cambridge: Woodhead Publishing Ltd., 2011: 20


[2] Liu F S, Gong S K, Xu H B. Acta Aeronaut Astronaut Sin, 2000; 21(S1): 30

(刘福顺, 宫声凯, 徐惠彬. 航空学报, 2000; 21(S1): 30)

[3] Wang L, Wang Y, Sun X G, He J Q, Pan Z Y, Wang C H. Mater Des, 2012; 35: 505

[4] Wei Q L, Guo H B, Gong S K, Xu H B. Thin Solid Films, 2008; 516: 5736

[5] Liang T Q. PhD Dissertation, Beihang University, 2012

(梁天权. 北京航空航天大学博士学位论文, 2012)

[6] Zhang W G, Liu L, Huang T W, Zhao X B, Qu M, Yu Z H, Fu H Z. China Foundry, 2009; 6(4): 300

[7] Guo H B, Sun L D, Li H F, Gong S K. Thin Solid Films, 2008; 516: 5732

[8] Liang T Q, Guo H B, Peng H, Gong S K. Surf Coat Technol, 2011; 205: 4374

[9] Dowon S, Kazuhiro O, Tetsuo S, Shozo M. J Therm Spray Technol, 2007; 16: 954

[10] Serivalil A, Rizzi G, Bardi U. Thermal Spray. Materials Park, Ohio: ASM International, 2001: 207

[11] Goldman E H, Darolia R. US Pat, US005316866, 1994

[12] Song J X, Li S S, Xiao C B, Wen L S, Han Y F. J Mater Eng, 2002; (7): 20

(宋尽霞, 李树索, 肖程波, 闻立时, 韩雅芳. 材料工程, 2002; (7): 20)

[13] Li J P, Wu F Y, Li W G. Corros Prot, 2000; 21(6): 18

(李建平, 吴风筠, 李伟光. 腐蚀与防护, 2000; 21(6): 18)

[14] Russell N V, Wigley F, Williamson J. J Mater Sci, 2000; 35: 2131

[15] Cai Y, He S M, Li J P, Lu F. J Mater Eng, 2006; (3): 33

(蔡妍, 贺世美, 李建平, 陆峰. 材料工程, 2006; (3): 33)

[16] Reitz D, Duval S, Grasso P D, Stankowski A, Silverio F M S. US Pat, US20100247740, 2010

[17] Warnes B, Schilbe J. Surf Coat Technol, 2001; 146-147: 147

[18] Liang T Q, Guo H B, Peng H, Gong S K. J Alloys Compd, 2011; 509: 8542

[19] Liu F, Sun W R, Yang S L, Li Z, Guo S R, Yang H C, Hu Z Q. Acta Metall Sin, 2008; 44: 791

(刘芳, 孙文儒, 杨树林, 李战, 郭守仁, 杨洪才, 胡壮麒. 金属学报, 2008; 44: 791)
Outlines

/