Fe-Al Intermetallic Phases Present in Fe Aluminide Coatings

dc.contributor.authorAgüero, Alina
dc.contributor.authorGonzález, Vanessa
dc.contributor.authorGutiérrez del Olmo, Marcos
dc.contributor.authorMuelas Gamo, Raúl
dc.date.accessioned2026-01-22T08:50:21Z
dc.date.available2026-01-22T08:50:21Z
dc.date.issued2011-09-09
dc.description[1] N. Tomashov: Theory of Corrosion and Protection of Metals (Macmillan, New York 1966) p. 119 [2] B. Pint, L. Walker, I. Wright: Materials at High Temperature Vol. 21 (2004), p. 175 [3] G. Strehl, R. Beaven and B. Lesage: Materials and Corrosion Vol. 56 (2005), p. 778 [4] Y. Zhang, B. Pint, K. Cooley and J. Haynes: Surface & Coatings Technology Vol. 202 (2008), p. 3839 [5] E. N’Dah, S. Tsipas, F. Bolívar, M. Hierro, F. Pérez: Oxidation of Metals Vol. 69 (2008), p. 77 [6] A. Agüero, Materials for Advanced Power Engineering 2006 Part II (2006), p. 949 [7] S. Kobayashi and T. Yakou: Material Science and Engineering, Vol. A338 (2002), p. 44 [8] M. Potesser, T. Schoeberl, H. Antrekowitsch and J. Bruckner, EDP Congress 2006, TMS (2006), p. 167 [9] A. Agüero, V. González, M. Gutiérrez, R. Knödler, R. Muelas and S. Straub, Materials and Corrosion, 62 (2011) 561-568 [10] A. Agüero, R. Muelas, A. Pastor and S. Osgerby: Surface & Coating Technology 200 (2005) p. 1119 [11] A. Agüero, R. Muelas, M. Gutiérrez, R. Van Vulpen, S. Osgerby and J. Banks: Surface & Coating Technology Vol. 201 (2007), p. 6253 [12] A. Agüero, K. Spiradek, M. Gutiérrez, R. Muelas and S. Höfinger, Materials Forum, 595- 598 pp. 251-259 (2008)
dc.description.abstractIron aluminide coatings are known to protect steels at elevated temperatures in diverse industrial environments. Depending on the Al content of the Fe-Al phase, a protective Al2O3 scale can be formed and maintained and the coatings are relatively stable up to approximately 900º C. At higher temperatures, Al inwards diffusion causes impoverishment of Al at the surface until it reaches a critical concentration below which the protective oxide will not form. Depending on the coating composition an Al content of 4 to 8 wt. % seems to be sufficient to maintain the protective scale [1-3]. Among the diverse coating deposition techniques, the application of slurries is one of the most economical, practical and versatile. Aluminide coatings have been generated by applying an Al slurry followed by heat treatment which depends on the substrate. For instance, it has been shown that on ferritic steels, deposition of an Al slurry followed by heat treatment at 700º C for 10 h generates a complex aluminide coatings composed of several intermetalllic phases including FeAl3, Fe2Al5 and FeAl (see figure 1). Under the coating, AlN acicular precipitates can form within the substrate, if the substrate contains sufficient N (≥ 0.01 wt. %) [4-6]. The coatings exhibit thickness-through cracks probably due to brittleness of the Fe2Al5 phase and to thermal expansion mismatch between the different phases. Figure 1: SEM cross sections of an "as deposited" Al slurry coating on P92 followed by heat treatment for 10 h at 700º C
dc.description.sponsorshipThe authors wish to acknowledge the members of the Area of Metallic Materials at INTA for their invaluable technical support, as well as the Spanish Inter-Ministerial Commission of Science and Technology (CICYT) for financial support (ref.: ENE2008-06755-C02-01).
dc.identifier.citationProceedings of the discussion meeting on the development of Innovative Iron Aluminide Alloys
dc.identifier.doi10.13140/2.1.4279.2003
dc.identifier.otherhttps://www.researchgate.net/publication/269629557_Fe-Al_Intermetallic_Phases_Present_in_Fe_Aluminide_Coatings
dc.identifier.urihttps://hdl.handle.net/20.500.12666/1649
dc.language.isoeng
dc.publisherUniversidad de Las Palmas de Gran Canaria
dc.subjectFe-Al intermetallics
dc.subjectAluminide Coatings
dc.subjectFerritic steel
dc.subjectDiffusion
dc.subjectSlurry
dc.subjectSteam oxidation
dc.titleFe-Al Intermetallic Phases Present in Fe Aluminide Coatings
dc.typeinfo:eu-repo/semantics/article

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