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High temperature oxidation of the Al 3Mg 2 complex metallic alloy

  • M. N. De Noirfontaine
  • , G. Baldinozzi
  • , M. G. Barthés-Labrousse
  • , J. Kusinski
  • , G. Boëmare
  • , M. Herinx
  • , M. Feuerbacher

Research output: Contribution to journalArticlepeer-review

Abstract

High temperature air oxidation of the Al 3Mg 2 complex metallic alloy was investigated on powder samples and bulk polycrystals in the temperature range 350-420 °C by thermogravimetric measurements, SEM and TEM. Oxidation at 420 °C on the polycrystalline samples comprised three successive phases characterised by linear kinetics laws. The first stage corresponded to the formation of a porous non adherent nanocrystalline MgO scale having a cauliflower morphology. A first acceleration in the kinetics law was ascribed to the nucleation and growth of MgAl 2O 4 crystallites which form a thin (~10 nm) film at the interface between the substrate alloy and the MgO top layer. A new linear regime was observed in the oxidation process corresponding to diffusion of magnesium through the grain boundaries of the spinel film and through the porous MgO layer. Finally, fragmentation and cracking of the scale leads to a further acceleration followed by a new linear regime.

Original languageEnglish
Pages (from-to)219-232
Number of pages14
JournalOxidation of Metals
Volume73
Issue number1-2
DOIs
Publication statusPublished - 1 Feb 2010

Keywords

  • Al Mg
  • Aluminium alloys
  • Complex metallic alloys
  • Intermetallics
  • Oxidation kinetics
  • Thermogravimetric analysis

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