|
|
Oxidation Behavior of CVD Aluminized Coatings on DD6 Single Crystal Ni-based Superalloy |
XU Xiwen1,2, SHU Xiaoyong1,2( ), CHEN Zhiqun1,2, HE Hairui1,2, DONG Shuhe1,2, FANG Yuqing1,2, PENG Xiao1,2 |
1 School of Materials Science and Engineering, Nanchang Hangkong University, Nanchang 330063, China 2 Jiangxi Provincial Engineering Research Center for Surface Technology of Aeronautical Materials, Nanchang 330063, China |
|
Cite this article:
XU Xiwen, SHU Xiaoyong, CHEN Zhiqun, HE Hairui, DONG Shuhe, FANG Yuqing, PENG Xiao. Oxidation Behavior of CVD Aluminized Coatings on DD6 Single Crystal Ni-based Superalloy. Journal of Chinese Society for Corrosion and protection, 2025, 45(1): 148-154.
|
Abstract Al-diffusion coatings composed primarily of δ-Ni2Al3 phase were developed on DD6 single-crystal nickel-based superalloy and pure nickel via chemical vapor deposition (CVD) technique at 750 oC, respectively. Results of oxidation in air at 1000 oC revealed that the CVD aluminide coating on DD6 superalloy presented higher oxidation rate rather than its counterpart on Ni. Photo-luminescence spectroscopy analysis indicated that during the early oxidation stage a single Al2O3 scale could formed on the two CVD aluminide coatings; however, there was a significant enhancement in the spectrum intensity of metastable θ-Al2O3 within the alumina scale on DD6 superalloy. It is proposed that elements from DD6 superalloy diffused into the alumina scale during oxidation, thereby influencing the oxidation rate by prolonging the transformation period of θ-Al2O3 into stable α-Al2O3 and promoting Al3+ outward diffusion for oxide growth.
|
Received: 27 September 2024
32134.14.1005.4537.2024.317
|
|
Corresponding Authors:
SHU Xiaoyong, E-mail: xiaoyong202@126.com
|
1 |
Reed R C. The Superalloys: Fundamentals and Applications [M]. Cambridge: Cambridge University Press, 2006
|
2 |
Tian H, He L M, Mu R D. Effect of thermal barrier coatings on high cycle fatigue properties of DD6 single crystal superalloy [J]. Equip. Environ. Eng., 2019, 16(1): 41
|
|
田 贺, 何利民, 牟仁德. 热障涂层对DD6单晶高温合金高周疲劳性能的影响 [J]. 装备环境工程, 2019, 16(1): 41
|
3 |
Meng G H, Qi H X, Du Z, et al. High-temperature oxidation behavior of chemical vapor deposition aluminide coatings on Inconel 718 superalloy [J]. Mater. Res. Appl., 2024, 18(2): 187
|
|
孟国辉, 齐浩雄, 杜 撰 等. CVD法制备Inconel 718高温合金表面铝化物涂层高温氧化行为研究 [J]. 材料研究与应用, 2024, 18(2): 187
|
4 |
Peng X. Metallic Coatings for High-Temperature Oxidation Resistance [M]. Combridge: Woodhead Publishing, Thermal Barrier Coatings, 2011: 53
|
5 |
Goward G W. Progress in coatings for gas turbine airfoils [J]. Surf. Coat. Tech., 1998, 108-109: 73
|
6 |
Yang J F, Shu X Y, Dong S H, et al. Oxidation behaviors of aluminized coatings on K403 Ni-based superalloy prepared by various methods [J]. Surf. Technol., 2023, 52(6): 319
|
|
杨久峰, 舒小勇, 董舒赫 等. 不同方法制备K403镍基高温合金渗铝层的氧化行为研究 [J]. 表面技术, 2023, 52(6): 319
|
7 |
Xiang Z D, Burnell-Gray J S, Datta P K. Aluminide coating formation on nickel-base superalloys by pack cementation process [J]. J. Mater. Sci., 2001, 36: 5673
|
8 |
Peng X, Tian L X, Zhang B Y, et al. Effect of grain refinement and metal oxide dispersions on high-temperature oxidation resistance of nickel aluminide coating [J]. Aeronaut. Manuf. Technol., 2019, 62(3): 41, 54
|
|
彭 晓, 田礼熙, 张帮彦 等. 镍铝涂层晶粒细化与金属氧化物掺杂改性研究 [J]. 航空制造技术, 2019, 62(3): 41, 54
|
9 |
Pedraza F, Proy M, Boulesteix C, et al. Slurry aluminizing of IN-800HT austenitic stainless steel and pure nickel. correlations between experimental results and modelling of diffusion [J]. Mater. Corros., 2016, 67: 1059
|
10 |
Choy K L. Chemical vapour deposition of coatings [J]. Prog. Mater. Sci., 2003, 48: 57
|
11 |
Yavorska M, Sieniawski J, Zielińska M. Functional properties of aluminide layer deposited on inconel 713 LC Ni-based superalloy in the CVD process [J]. Arch. Metall. Mater., 2011, 56: 187
|
12 |
Zielińska M, Zagula-Yavorska M, Sieniawskt J, et al. Microstructure and oxidation resistance of an aluminide coating on the nickel based superalloy mar m247 deposited by the CVD aluminizing process [J]. Arch. Metall. Mater., 2013, 58: 697
|
13 |
Yao R, Guo H B, Peng H, et al. Recrystallization and inter-diffusion behaviors of NiCrAlYSi coating/DD6 single crystal superalloy system [J]. Acta Aeronaut. Astronaut. Sin., 2011, 32: 751
|
|
姚 锐, 郭洪波, 彭 徽 等. NiCrAlYSi涂层/DD6单晶高温合金界面再结晶和互扩散行为 [J]. 航空学报, 2011, 32: 751
|
14 |
Hu Y B, Zhu Y W, Cheng C Q, et al. Effect of surface signature on oxidation behavior of DD6 alloy at 950 oC [J]. Chin. J. Nonferr. Met., 2020, 30: 129
|
|
胡叶兵, 朱亚威, 程从前 等. 表面状态对DD6镍基单晶合金在950 ℃氧化行为的影响 [J]. 中国有色金属学报, 2020, 30: 129
|
15 |
Atkins E. Elements of X-ray diffraction [J]. Phys. Bull., 1978, 29: 572
|
16 |
Wei H, Sun X F, Zheng Q, et al. Calculation of interdiffusion coefficients of Ni and Al atoms in β-NiAl phase as aluminide coatings [J]. Acta Metall. Sin., 2004, 40(1): 51
|
|
韦 华, 孙晓峰, 郑 启 等. 铝化物涂层中β-NiAl相Ni, Al互扩散系数计算 [J]. 金属学报, 2004, 40(1): 51
|
17 |
Brumm M W, Grabke H J. The oxidation behaviour of NiAl-I. phase transformations in the alumina scale during oxidation of NiAl and NiAl-Cr alloys [J]. Corros. Sci., 1992, 33: 1677
|
18 |
Peng X, Wang F H, Clarke D R. Photo-stimulated luminescence spectroscopic analysis of the oxidation of magnetron sputtered Co-Cr-Al(Y) nanocoatings Ⅰ. phase CharaCterization and transformation of Al2O3 [J]. Acta Metall. Sin., 2003, 39: 1055
|
|
彭 晓, 王福会, Clarke D R. 光激发荧光谱术分析Co-Cr-Al(Y)纳米涂层的氧化Ⅰ. Al2O3相的表征与相转变 [J]. 金属学报, 2003, 39: 1055
|
19 |
Zhao W, Li Z Q, Gleeson B. A new kinetics-based approach to quantifying the extent of metastable → stable phase transformation in thermally-grown Al2O3 scales [J]. Oxid. Met., 2013, 79: 361
|
20 |
Huang Y W, Peng X. The promoted formation of an α-Al2O3 scale on a nickel aluminide with surface Cr2O3 Particles [J]. Corros. Sci., 2016, 112: 226
|
21 |
Peng X, Li T F, Pan W P. Oxidation of a La2O3-modified aluminide coating [J]. Scr. Mater., 2001, 44: 1033
|
22 |
Khan A, Huang Y W, Dong Z H, et al. Effect of Cr2O3 nanoparticle dispersions on oxidation kinetics and phase transformation of thermally grown alumina on a nickel aluminide coating [J]. Corros. Sci., 2019, 150: 91
doi: 10.1016/j.corsci.2019.01.032
|
23 |
Peng X, Guan Y, Dong Z H, et al. A fundamental aspect of the growth process of alumina scale on a metal with dispersion of CeO2 nanoparticles [J]. Corros. Sci., 2011, 53: 1954
|
24 |
Huang Y C, Peng X, Chen X Q, et al. TiO2 nanoparticles-assisted α-Al2O3 direct thermal growth on nickel aluminide intermetallics: Template effect of the oxide with the hexagonal oxygen sublattice [J]. Corros. Sci., 2019, 153: 109
|
25 |
Kofstad P. High Temperature Corrosion [M]. New York: Elsevier Applied Science Publisher, 1988
|
26 |
Burtin P, Brunelle J P, Pijolat M, et al. Influence of surface area and additives on the thermal stability of transition alumina catalyst supports. I: kinetic data [J]. Appl. Catal., 1987, 34: 225
|
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|