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Original Article

Structural characterisation of iron aluminide coatings prepared by chemical vapour deposition

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Pages 357-363 | Received 22 May 2012, Accepted 10 Aug 2012, Published online: 24 Feb 2014

References

  • Wood JH, Goldman EH:‘Protective coatings’ in ‘Superalloys II’(, Sims C T, et al..), 359–384; 1987, New York, John Wiley & Sons.
  • Goward G: ‘Progress in coating for gas turbine airfoils’, Surf. Coat. Technol., 1998, 73, 108–109.
  • Green SW, Stott FH: ‘Effectiveness of aluminizing in protecting iron-base alloys in sulphidising gases at high temperatures’, Oxid. Met., 1991, 36, (3–4), 239.
  • Pint BA, Zang Y, Tortorelli PF, Haynes JA, Wright IG: ‘Evaluation of uron aluminide CVD coatings for high temperature corrosion protection’, Mater. High Temp., 2001, 18, (3), 185–192.
  • Bayer GT: ‘Vapour aluminum diffused steels for high-temperature corrosion resistance’, Mater. Perform., 1995, 34, (8), 34–38.
  • Aguero A, Muelas R, Pastor A, Osgerby S: ‘Long exposure steam oxidation testing and mechanical properties of slurry aluminide coatings for steam turbine components’, Surf. Coat. Technol., 2005, 200, 1219–1224.
  • Fan P, Riddle E, Fang ZZ, Sohn HY: ‘Iron aluminide coating by in-situ reaction process’, Surf. Coat. Technol., 2008, 202, 6090–6094.
  • Pint BA, Zhang Y, Walker LR, Wright IG: ‘Long-term performance of aluminide coatings on Fe-base alloys’, Surf. Coat. Technol., 2007, 202, (4–7), 637–642.
  • Aguero A: ‘Energy materials’, Mater. Sci. Eng. Energy Syst., 2008, 3, (1), 35–44.
  • Xiang ZD, Datta PK: ‘Formation of aluminide coatings on low alloy steels at 650°C by pack cementation process’, Mater. Sci. Technol., 2004, 20, (10), 1297–1302.
  • Xiang ZD, Datta PK: ‘Effects of pack composition on the formation of aluminide coatings on alloy steels at 650°C’, J. Mater. Sci., 2005, 40, (8), 1959–1966.
  • Wang YQ, Zhang Y, Wilson DA: ‘Formation of aluminide coating on Ferritic -Martinsetic steels by a Low temperature pack cementation process’, Surf. Coat. Technol., 2010, 204, 2737–2744.
  • Benamati G., Chabrol C., Perujo A., Rigal E., Glasbrenner H., ‘Development of tritium permeation barriers on Al base in Europe’, J. Nucl. Mater., 1999, 271–272, 391–395.
  • Yang HG, Zhan Q, Zhao WW, Yuan XM, Hu Y, Han ZB: ‘Study of an iron-aluminide and alumina tritium barrier coating’, J. Nucl. Mater., 2011, 417, 1237–1240.
  • Warnes BM, Punola DC: ‘Clean diffusion coatings by chemical vapour deposition’, Surf. Coat. Technol., 1997, 94–95, 1–6.
  • John JT: ‘Chemical vapour deposition of aluminide coatings on iron’, PhD thesis, Indian Institute of Technology, Bombay, India, 2000.
  • Mevrel R, Duret C, Pichoir R: ‘Pack cementation process’, Mater. Sci. Technol., 1986, 2, 201.
  • Parzuchowski RS: ‘Gas phase deposition of aluminum on nickel alloys’, Thin Solid Films, 1977, 45, 349.
  • Aguero A, Spiradek K, Hofinger S, Gutierrez M, Muelas R: Mater. Sci. Forum, 2008, 595–598, 251–259.
  • El Mahallawy NA, Taha MA, Shady MA, El-Sissi AR, Attia AN, Reif W: ‘Analysis of coating layer formed on steel strips during aluminizing by hot dipping in Al–Si baths’, Mater. Sci. Technol., 1997, 13, (10), 832.
  • Badaruddin M, Wang CJ: ‘Microstructure and high temperature oxidation of the hot-dipping Al–Si coating on low carbon steel in ethanol, water vapour and air at 700°C’, Adv. Mater. Res., 2009, 79–82, 1775–1778.
  • Pal Dey S, Deevi SC: ‘Cathodic arc deposited FeAl coatings: properties and oxidation characteristics’, Mater. Sci. Eng. A, 2003, A355, 208–215.
  • Sharma G, Awasthi R, Chandra K: ‘A facile route to produce FeAl intermetallic coatings by laser surface alloying’, Intermetallics, 2010, 18, 2124–2127.
  • Kohlscheen J, Stock HR: ‘Deposition of silicon enriched nickel aluminide coatings on internally cooled airfoils’, Surf. Coat. Technol., 2009, 107, 22–27.
  • Cabrera AL, Zehner JE, Armor JN: ‘Oxidation protection of mild steel by coatings made with aluminum alkyls’, Oxid. Met., 1991, 36, (3–4), 2650.
  • Zhang Y, Pint BA, Cooley KM, Haynes JA: ‘Formation of aluminide coatings on Fe-based alloys by chemical vapour deposition’, Surf. Coat. Technol., 2008, 202, 3839–3849.
  • Kohlscheen J, Stock HR: ‘Gas phase aluminizing of nickel alloys with hydrogen chloride’, Surf. Coat. Technol., 2007, 202, 613.
  • Christoglou Ch, Voudouris N, Angelopoulos GN: ‘Formation and modeling of aluminide coatings on iron by a fluidised bed CVD process’, Surf. Coat. Technol., 2002, 155, 51.
  • Sanchez L, Bolıvar FJ, Hierro MP, Perez FJ: ‘Iron aluminide coatings on ferritic steels by CVD–FBR modified process with Hf’, Intermetallics, 2008, 16, (10), 1161–1166.
  • John JT, Kale GB, Srinivasa RS, De PK: ‘A kinetic model for iron aluminide coating by low pressure chemical vapour deposition. Part I. Deposition kinetics’, Thin Solid Films, 2004, 466, 339.
  • John JT, Kale GB, Bharadwaj SR, Srinivasa RS, De PK: ‘A kinetic model for iron aluminide coating by low pressure chemical vapour deposition. Part II. Model formulation’, Thin Solid Films, 2004, 466, 331.
  • Bangaru NV, Krutenat RC: ‘Diffusion coatings of steels: formation mechanism and microstructure of aluminised heat-resistant stainless steels’, J. Vac. Sci. Technol., 1984, B2, (4), 806.
  • Massalski T B, ed (ed.): ‘Binary alloy phase diagrams’, 112; 1986, Materials Park, OH, ASM International.
  • Hultgren R, Desai PD, Hawkins DJ, Gleser M, Kelly (eds.) KK: in ‘Selected values of the thermodynamic properties of binary alloys’, 148, 161, 192; 1973, Materials Park, OH, ASM International.
  • Thornton JA: ‘High rate thick film growth’, Annu. Rev. Mater. Sci., 1977, 7, 239.
  • Mehrer H, Eggersmann M, Gude A, Salamon M, Sepiol B: ‘Diffusion in intermetallic phases of the Fe–Al and Fe–Si systems’, Mater. Sci. Eng. A, 1997, A239–A240, 889.
  • Larikov LN, Geichenko VV, Falchenko VM: ‘Diffusion process in ordered alloys’; 1981, New Delhi, National Bureau of Standards.

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