A CeCl3/H2O2 aqueous solution treatment is assessed for the formation of conversion coatings on a AZ63 magnesium alloy. The coating, composition and morphology are examined. The conversion coating appears to consist of a thin and cracked coating with `dry-mud' morphology with large agglomerates over cathodic intermetallic particles. The corrosion resistance in NaCl solution has been investigated. The cerium-based conversion process improves the pitting potential of the alloy. Better corrosion resistant surfaces are obtained when the samples are submitted to repeated immersions in the conversion bath for 30 s up to 180 s of total immersion time. The thickness of the cerium conversion coating rapidly grows up in the first 30 s; afterwards it remains nearly constant. An increase of both hydrogen peroxide concentration and immersion time produces a worsening of the alloy to corrosion. (C) 2003 Elsevier Science B.V. All rights reserved.

Cerium-based chemical conversion coating on AZ63 magnesium alloy

Napolitani E;
2003

Abstract

A CeCl3/H2O2 aqueous solution treatment is assessed for the formation of conversion coatings on a AZ63 magnesium alloy. The coating, composition and morphology are examined. The conversion coating appears to consist of a thin and cracked coating with `dry-mud' morphology with large agglomerates over cathodic intermetallic particles. The corrosion resistance in NaCl solution has been investigated. The cerium-based conversion process improves the pitting potential of the alloy. Better corrosion resistant surfaces are obtained when the samples are submitted to repeated immersions in the conversion bath for 30 s up to 180 s of total immersion time. The thickness of the cerium conversion coating rapidly grows up in the first 30 s; afterwards it remains nearly constant. An increase of both hydrogen peroxide concentration and immersion time produces a worsening of the alloy to corrosion. (C) 2003 Elsevier Science B.V. All rights reserved.
2003
cerium
chemical conversion
magnesium alloy
scanning electron microscopy
secondary ion mass spectroscopy
impedance spectroscopy
METAL-MATRIX COMPOSITES
ALUMINUM-ALLOYS
CORROSION
LAYERS
INHIBITION
PROTECTION
FILM
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/202859
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