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Energy Materials
Materials Science and Engineering for Energy Systems
Volume 13, 2018 - Issue 1
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Microscopy of Oxidation

High-temperature behavior of oxide dispersion strengthening CoNiCrAlY

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Pages 108-119 | Received 05 Sep 2017, Accepted 01 Oct 2017, Published online: 08 Nov 2017

References

  • Nowak W, Naumenko D, Mor G, et al. Effect of processing parameters on MCrAlY bondcoat roughness and lifetime of APS–TBC systems. Surf Coat Technol. 2014;260:82–89.10.1016/j.surfcoat.2014.06.075
  • Pint BA, Lance MJ, Haynes JA. The effect of coating composition and geometry on TBC lifetime. ASME Paper #GT2017-65103, for the International Gas Turbine & Aeroengine Congress & Exhibition; 2017 June 26–30; Charlotte, NC.
  • Evans HE. Stress effects in high temperature oxidation of metals. Int Mater Rev. 1995;40:1–40.10.1179/imr.1995.40.1.1
  • Schütze M. An approach to a global model of the mechanical behaviour of oxide scales. Mater High Temp. 1994;12:237–247.10.1080/09603409.1994.11689491
  • Brindley WJ, Whittenberger JD. Stress relaxation of low pressure plasma-sprayed NiCrAlY alloys. Mat Sci Eng A. 1993;163:33–41.10.1016/0921-5093(93)90575-Y
  • Evans AG, Mumm DR, Hutchinson JW, et al. Mechanisms controlling the durability of thermal barrier coatings. Prog Mater Sci. 2001;46:505–553.10.1016/S0079-6425(00)00020-7
  • Pint BA, Garratt-Reed AJ, Hobbs LW. The reactive element effect in commercial ODS FeCrAI alloys. Mater High Temp. 1995;13:3–16.10.1080/09603409.1995.11689496
  • Naumenko D, Pint BA, Quadakkers WJ. Current thoughts on reactive element effects in alumina-forming systems: In memory of John Stringer. Oxid Met. 2016;86:1–43.10.1007/s11085-016-9625-0
  • Leyens C, Fritscher K, Gehrling R, et al. Oxide scale formation on an MCrAlY coating in various H2-H2O atmospheres. Surf Coat Technol. 1996;82:133–144.10.1016/0257-8972(95)02665-7
  • Janakiraman R, Meier GH, Pettit FS. The effect of water vapor on the oxidation of alloys that develop alumina scales for protection. Met Mater Trans. 1999;30:2905–2913.10.1007/s11661-999-0128-3
  • Smialek JL. Enigmatic moisture effects on Al2O3 scale and TBC adhesion. Mater Sci Forum. 2008;595–598:191–198.10.4028/www.scientific.net/MSF.595-598
  • Déneux V, Cadoret Y, Hervier S, et al. Effect of water vapor on the spallation of thermal barrier coating systems during laboratory cyclic oxidation testing. Oxid Met. 2010;73:83–93.10.1007/s11085-009-9170-1
  • Pint BA, Unocic KA, Allen Haynes JA. The effect of environment on thermal barrier coating lifetime. J Eng Gas Turb Power. 2016;138(8):082102.10.1115/1.4032438
  • Bergholz J, Pint BA, Unocic KA, et al. Fabrication of oxide dispersion strengthened bond coats with low Al2O3 content. J Therm Spray Technol. 2017;26:868–879.10.1007/s11666-017-0550-9
  • Pint BA, More KL, Wright IG, et al. Characterization of thermally cycled alumina scales. Mater High Temp. 2000;17:165–171.10.1179/mht.2000.024
  • Pint BA, More KL. Characterization of alumina interfaces in TBC systems. J Mater Sci. 2009;44:1676–1686.10.1007/s10853-008-3221-x
  • Unocic KA, Pint BA. Characterization of the alumina scale formed on a commercial MCrAlYHfSi coating. Surf Coat Technol. 2010;205:1178–1182.10.1016/j.surfcoat.2010.08.111
  • Hindam H, Whittle DP. Peg formation by short-circuit diffusion in Al2O3 scales containing oxide dispersions. J Electrochem Soc. 1982;129:1147–1149.10.1149/1.2124044
  • Hejrani E, Sebold D, Nowak WJ, et al. Isothermal and cyclic oxidation behavior of free standing MCrAlY coatings manufactured by high-velocity atmospheric plasma spraying. Surf Coat Technol. 2017;313:191–201.10.1016/j.surfcoat.2017.01.081
  • Pint BA, Alexander KB. Grain boundary segregation of cation dopants in α-Al2O3 scales. J Electrochem Soc. 1998;145:1819–1829.10.1149/1.1838563
  • Pint BA. Optimization of Reactive Element Additions to Improve Oxidation Performance of Alumina-Forming Alloys. Journal of the American Ceramic Society. 2003;86:686–695.
  • DeMasi-Marcin JT, Gupta DK. Protective coatings in the gas turbine engine. Surf Coat Technol. 1994;68–69:1–9.10.1016/0257-8972(94)90129-5
  • Pint BA, Garratt-Reed AJ, Hobbs LW. Possible role of the oxygen potential gradient in enhancing the diffusion of foreign ions on α-Al2O3 grain boundaries. J Am Ceram Soc. 1998;81:305–314.
  • Dryepondt S, Pint BA. Effect of Fe–Al substrate mechanical properties on alumina scale morphology. Mater Sci Eng. 2008;497:224–230.10.1016/j.msea.2008.07.005
  • Echsler H, Martinez E, Singheiser L, et al. Residual stresses in alumina scales grown on different types of Fe–Cr–Al alloys: Effect of specimen geometry and cooling rate. Mater Sci Eng A. 2004;384:1–11.10.1016/S0921-5093(04)00887-1
  • Kochubey V, Naumenko D, Wessel E, et al. Evidence for Cr-carbide formation at the scale/metal interface during oxidation of FeCrAl alloys. Mater Lett. 2006;60:1654–1658.10.1016/j.matlet.2005.11.087
  • Haynes JA, Unocic KA, Pint BA. Effect of water vapor on the 1100 °C oxidation behavior of plasma-sprayed TBCs with HVOF NiCoCrAlX bond coatings. Surf Coat Technol. 2013;215:39–45.10.1016/j.surfcoat.2012.07.099
  • Toscano J, Vaβen R, Gil A, et al. Parameters affecting TGO growth and adherence on MCrAlY-bond coats for TBC’s. Surf Coat Technol. 2006;201:3906–3910.10.1016/j.surfcoat.2006.07.247
  • Toscano J, Naumenko D, Gil A, et al. Parameters affecting TGO growth rate and the lifetime of TBC systems with MCrAlY-bondcoats. Mater Corros. 2008;59:501–507.10.1002/(ISSN)1521-4176
  • Opila EJ. Volatility of common protective oxides in high-temperature water vapor: Current understanding and unanswered questions. Mater Sci Forum. 2004;461–464:765–774.10.4028/www.scientific.net/MSF.461-464
  • Opila EJ, Myers DL. Alumina volatility in water vapor at elevated temperatures. J Am Ceram Soc. 2004;87:1701–1705.10.1111/j.1551-2916.2004.01701.x
  • Nowak W. High temperature corrosion of alloys and coatings in gas-turbines fired with hydrogen-rich syngas fuels [PhD thesis]. Germany: RWTH Technical University Aachen; 2014.
  • Chyrkin A, Pillai R, Ackermann H, et al. Modeling carbide dissolution in alloy 602 CA during high temperature oxidation. Corros Sci. 2015;96:32–41.10.1016/j.corsci.2015.03.019
  • Pillai R, Chyrkin A, Galiullin T, et al. External α-Al2O3 scale on Ni-base alloy 602 CA – part II: microstructural evolution. Corros Sci. 2017;127:27–38.
  • Rybicki GC, Smialek JL. Effect of the θ−α-Al2O3 transformation on the oxidation behavior of β-NiAl+Zr. Oxid Met. 1989;31:275–304.10.1007/BF00846690
  • Pettit FS, Randklev EH, Felten EJ. Formation of NiAl2O4 by solid state reaction. J Am Cer Soc. 1966;49:199–203.10.1111/jace.1966.49.issue-4
  • Sullivan MH, Mumm DR. Vapor-phase-mediated phenomena associated with high temperature, high water content oxidation of MCrAlX bond coats. Oxid Met. 2014;82:1–20.10.1007/s11085-014-9473-8
  • Lance MJ, Haynes JA, Pint BA. The effects of temperature and substrate curvature on TBC lifetime and residual stress in alumina scales beneath APS YSZ. Surf Coat Technol. 2016;308:19–23.10.1016/j.surfcoat.2016.09.087

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