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The influence of platinum on the oxidation and sodium sulfate induced hot corrosion of NiAl diffusion coatings

Haiping Lai (Institutionen för teknisk fysik, Mikroskopi och mikroanalys) ; Pavleta Knutsson (Institutionen för teknisk fysik, Mikroskopi och mikroanalys) ; Krystyna Stiller (Institutionen för teknisk fysik, Mikroskopi och mikroanalys)
Materials at High Temperatures (0960-3409). Vol. 28 (2011), 4, p. 302-308.
[Artikel, refereegranskad vetenskaplig]

Oxidation and corrosion properties at 900 degrees C of two coatings, one containing platinum and the other platinum-free, on IN792 were investigated. During the corrosion exposures, sodium sulfate salt was situated in the furnace together with the coated specimens. The temperature of the salt was kept above its melting point but lower than the temperature of the coating i.e. 900 degrees C. The exposure times ranged from 100 to 1000 h. The formed oxide scales were studied by X-ray diffraction, scanning electron microscopy, energy-dispersive X-ray spectroscopy, transmission electron microscopy and scanning transmission electron microscopy techniques. It is shown that the presence of Pt improves the protective properties of the coating against corrosion. The propagation stage of corrosion on the platinum-free coating is reached already after 100 h of exposure. On the other hand the scale formed on the platinum-rich samples still appeared to be protective even after 500 h. The details concerning structure and chemistry of the scales formed are presented and discussed.

Nyckelord: microstructure, sodium sulfate corrosion, influence of platinum, diffusion coatings, oxide scale, modified aluminide coatings, behavior, superalloy, adhesion, alloys, resistance, growth, wancy hm, 1991, surface & coatings technology, v49, p1, odeshmukh v, 2011, oxid met, p1, tlock gj, 1990, werkstoffe und korrosion-materials and corrosion, v41, p710

Denna post skapades 2012-01-20.
CPL Pubid: 154151


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Institutioner (Chalmers)

Institutionen för teknisk fysik, Mikroskopi och mikroanalys (2005-2012)



Chalmers infrastruktur

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High temperature oxidation and corrosion of NiAl coatings