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金属学报  2012 

梯度NiCrAlY涂层的1000和1100℃氧化行为研究

DOI: 10.3724/SP.J.1037.2012.00024, PP. 759-768

Keywords: 电弧离子镀,梯度涂层,高温氧化

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Abstract:

采用电弧离子镀技术及后续热处理工艺在镍基高温合金上制备了均匀NiCrAlY涂层和梯度NiCrAlY涂层,分析了2种涂层的组织结构,对比研究了2种涂层静态空气下1000和1100℃恒温氧化行为以及1100℃的循环氧化行为.结果表明均匀NiCrAlY涂层由γ'/γ相和少量β-NiAl相、α-Cr相组成,成分分布均匀;梯度NiCrAlY涂层具有外层富Al和内层富Cr的结构,其中外层由β-NiAl相和少量γ'/γ相、α-Cr相组成.一方面,梯度涂层的初始Al含量较高;另一方面,氧化过程中其富Cr区两侧出现了对富Al区的Al向基体扩散起阻碍作用的Cr(W)析出带.这两方面使梯度涂层长时间维持更多的Al存储相,提升了氧化膜的迅速生成及再生成能力,从而使涂层具有较好的抗氧化性能.

References

[1]  Nicholls J R, Simms N J, Chan W, Evans H E. Surf Coat Technol,2002; 149: 236
[2]  Ma J, Jiang S M, Li H Q, Wang W X, Gong J, Sun C. Corros Sci,2011; 53: 1417
[3]  Peng X, Jiang S M, Duan X H, Gong J, Sun C. Acta Metall Sin,2009; 45: 378
[4]  (彭新, 姜肃猛, 段绪海, 宫骏, 孙超. 金属学报. 2009; 45: 378)
[5]  Wang W X, Jiang S M, Wei G Z, Ma J, Gong J, Sun C. Acta Metall Sin,2011; 47: 578
[6]  (王维新, 姜肃猛, 卫广智, 马军, 宫骏, 孙超.金属学报. 2011; 47: 578)
[7]  Jiang S M, Xu C Z, Li H Q, Ma J, Gong J, Sun C. Corros Sci,2010; 52: 1746
[8]  Lou H Y, Wang F H. Vacuum, 1992; 43: 757
[9]  Sun C, Wang Q M, Tang Y J, Guan Q F, Gong J, Wen L S. Acta Metall Sin, 2005; 41: 1167
[10]  (孙超, 王启民, 唐永吉, 关庆丰, 宫骏, 闻立时. 金属学报,2005; 41: 1167)
[11]  Xu C Z, Jiang S M, Ma J, Gong J, Sun C. Acta Metall Sin,2009; 45: 964
[12]  (徐朝政, 姜肃猛, 马军, 宫骏, 孙超. 金属学报. 2009; 45: 964)
[13]  Birks N, Meier G H, Pettit F S. Introduction to the High-Temperature Oxidation of Metals. 2nd ed, Cambridge: Cambridge University Press, 2006: 123
[14]  Knotek O, Lugscheider E, Lofffler F, Beele W. Surf Coat Technol, 1993; 61: 6
[15]  Birks N, Meier G H, Pettit F S. Introduction to the High-Temperature Oxidation of Metals. 2nd ed., Cambridge: Cambridge University Press, 2006: 133
[16]  Jeanine T D, Dinesh K G. Surf Coat Technol, 1994; 68--69: 1
[17]  Goward G W. Surf Coat Technol, 1998; 108--109: 73
[18]  Czech N, Schmitz F, Stamm W. Mater Manuf Processes, 1995; 10: 1021
[19]  Brandl W, Grabke H J, Toma D, Kruger J. Surf Coat Technol, 1996; 86--87: 41
[20]  Tang F, Ajdelsztajn L, Schoenung J M. Oxid Met, 2004; 61: 219
[21]  Wood J H, Swede S T. Surf Coat Technol, 1993; 61: 1
[22]  Guo M H, Wang Q M, Gong J, Sun C, Wen L S. Surf Coat Technol,2006; 201: 1302
[23]  Guo M H, Wang Q M, Gong J, Sun C, Huang R F, Wen L S. Corros Sci, 2006; 48: 2750
[24]  Lee E Y, Chartier D M, Biederman R R, Sisson Jr R D. Surf Coat Technol, 1987; 32: 19
[25]  Doychak J. In: Westbrook J H, Fleischer R L, eds., Intermetallic Compounds, New York: John Wiley & Sons Ltd., 1994: 977
[26]  Li M S. High Temperature Corrosion of Materials.Beijing: Metallurgical Industry Press, 2001: 183
[27]  (李美栓. 金属的高温腐蚀. 北京: 冶金工业出版社, 2001: 183)
[28]  Hagel W C. Corrosion, 1965; 21: 316
[29]  Rhysjones T N. Corros Sci, 1989; 29: 623
[30]  Knotek O, Loffler F, Beele W. Surf Coat Technol, 1993; 61: 6
[31]  Brandl W, Toma D, Kruger J, Grabke H J, Matthaus G. Surf Coat Technol, 1997; 94: 21
[32]  Rhys--Jones T N. Corros Sci, 1989; 29: 623
[33]  Morral J E, Thompson M S. Surf Coat Technol, 1990; 43-44: 371

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