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Report

Enhancing the high temperature oxidation behavior of Cr2AlC coatings by reducing grain boundary nanoporosity

ORCID Icon, ORCID Icon, , , &
Pages 127-133 | Received 15 Jun 2020, Published online: 18 Dec 2020

References

  • Barsoum MW. Mn+1AXn phases: a new class of solids; thermodynamically stable nanolaminates. Prog Solid State Chem. 2000;28(1-4):201–281.
  • Eklund P, Beckers M, Jansson U, et al. The Mn+1AXn phases: Materials science and thin-film processing. Thin Solid Films. 2010;518(8):1851–1878.
  • Music D, Schneider JM. The correlation between the electronic structure and elastic properties of nanolaminates. JOM. 2007;59(7):60–64.
  • Tallman DJ, Anasori B, Barsoum MW. A critical review of the oxidation of Ti2AlC, Ti3AlC2 and Cr2AlC in Air. Mater Res Lett. 2013;1(3):115–125.
  • Lin ZJ, Li MS, Wang JY, et al. High-temperature oxidation and hot corrosion of Cr2AlC. Acta Mater. 2007;55(18):6182–6191.
  • Lee DB, Nguyen TD, Han JH, et al. Oxidation of Cr2AlC at 1300°C in air. Corros Sci. 2007;49(10):3926–3934.
  • Lee DB, Park SW. Oxidation of Cr2AlC between 900 and 1200 °C in Air. Oxid Met. 2007;68(5):211–222.
  • Lee DB, Nguyen TD, Park SW. Long-time oxidation of Cr2AlC between 700 and 1,000 °C in Air. Oxid Met. 2012;77(5):275–287.
  • Smialek JL. Oxygen diffusivity in alumina scales grown on Al-MAX phases. Corros Sci. 2015;91:281–286.
  • Li S, Chen X, Zhou Y, et al. Influence of grain size on high temperature oxidation behavior of Cr2AlC ceramics. Ceram Int. 2013;39(3):2715–2721.
  • Hajas DE, to Baben M, Hallstedt B, et al. Oxidation of Cr2AlC coatings in the temperature range of 1230 to 1410°C. Surf Coat Technol. 2011;206:591–598.
  • Wang Z, Ma G, Liu L, et al. High-performance Cr2AlC MAX phase coatings: oxidation mechanisms in the 900–1100°C temperature range. Corros Sci. 2020;167:108492.
  • Gonzalez-Julian J, Onrubia S, Bram M, et al. High-temperature oxidation and compressive strength of Cr2AlC MAX phase foams with controlled porosity. J Am Ceram Soc. 2018;101(2):542–552.
  • Velasco B, Gordo E, Hu L, et al. Influence of porosity on elastic properties of Ti2AlC and Ti3SiC2 MAX phase foams. J Alloys Compd. 2018;764:24–35.
  • Stelzer B, Chen X, Bliem P, et al. Remote tracking of phase changes in Cr2AlC thin films by in-situ resistivity measurements. Sci Rep. 2019;9(1):8266.
  • Rosen J, Persson POÅ, Ionescu M, et al. Oxygen incorporation in Ti2AlC thin films. Appl Phys Lett. 2008;92(6):064102.
  • Greczynski G, Mráz S, Hultman L, et al. Venting temperature determines surface chemistry of magnetron sputtered TiN films. Appl Phys Lett. 2016;108(4):041603.