High-Temperature-Oxidation Behavior of Iron–Aluminide Diffusion Coatings

被引:0
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作者
C. Houngniou
S. Chevalier
J. P. Larpin
机构
[1] Université de Bourgogne,Laboratoire de Recherches sur la Réactivité des Solides, UMR 56 13 CNRS
来源
Oxidation of Metals | 2006年 / 65卷
关键词
iron aluminide; pack cementation ; MOCVD; Y; O; reactive element effect; high-temperature oxidation; Al; O; scales; cyclic oxidation;
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摘要
Aluminide diffusion coatings were oxidized in air under atmospheric pressure under isothermal and cyclic conditions. The high-temperature efficiency of the pack-aluminized alloys was tested by comparing their oxidation behavior in the temperature range 800–1080°C. The kp values deduced from the parabolic plots of weight-gain curves showed that α-Al2O3 composed the major phase of the oxide scale on samples oxidized at T > 1000°C. For lower temperatures, transient-alumina phases were observed. The aluminide materials also exhibited excellent resistance to cyclic oxidation at 1000°C. The second aim of this study was to dope the aluminide compounds obtained by a pack-cementation process with yttria, which was introduced by metal-organic chemical-vapor deposition (MOCVD). The beneficial effect of the reactive-element-oxide coating is strongly dependent on its mode of introduction, since the oxidation resistance is drastically increased when the Y2O3 coating was applied prior to the aluminization process. When applied after the aluminization, the reactive element gave negative effects on the high-temperature oxidation behavior of the iron aluminides. The oxide morphologies, X-ray diffraction patterns and two-stage experiments helped to understand the oxide-scale-growth mechanisms.
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页码:409 / 439
页数:30
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