Corrosion resistant polymer derived ceramic composite environmental barrier coatings

Corrosion resistant coatings are a promising solution to protect structural metals in harsh environments. Ceramic composite coatings made from polymer-derived ceramics are highly attractive due to the ease of their processing and the ability to work in various environments. This paper is focused on...

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Bibliographic Details
Published inJournal of the European Ceramic Society Vol. 34; no. 15; pp. 3597 - 3606
Main Authors Wang, Kaishi, Unger, Jesse, Torrey, Jessica D., Flinn, Brian D., Bordia, Rajendra K.
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.12.2014
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Summary:Corrosion resistant coatings are a promising solution to protect structural metals in harsh environments. Ceramic composite coatings made from polymer-derived ceramics are highly attractive due to the ease of their processing and the ability to work in various environments. This paper is focused on the performance of a TiSi2-filled SiOC ceramic composite coating system on 316 stainless steel (SS) substrates as a corrosion resistant coating. The best-performing quadruple-dip coatings were shown to be able to reduce the weight loss due to hot sulfuric acid (95+%, 104–107°C) corrosion by 85% over a 30-day period. Coatings from the same system were also examined under 800°C static (100h) and cyclic (10 cycles) oxidation. Our results indicate that the coatings perform well under both conditions of prolonged high temperature oxidation and thermal cycling, suggesting the strong potential of this system as an environmental barrier coating (EBC).
ISSN:0955-2219
1873-619X
DOI:10.1016/j.jeurceramsoc.2014.05.036