DOE OSTI · 3375480
Oxidation of Materials and Coatings at 1000°C and 250 bar for use in Oxy-Combustion Turbine
Abstract
Combinations of materials and coatings were tested in supercritical CO2 (sCO2) to evaluate their reliability in an oxy-fuel turbine being designed to operate in the 150-300 MWe size range at inlet temperatures of 1,150 °C at 300 bar and exhaust temperatures in the 725-775 °C range. Nickel alloys and stainless steels were exposed to supercritical CO2 at 1,000 °C and 250 bar for a total of over 1,500 hours. The materials were tested bare, with a nanocrystalline MCrAlY bond coat only, or with one of two types of bond coat and a thermal barrier coating. A novel test facility using a localized heat zone generated by an induction heater inside an externally cooled autoclave was developed to perform those tests. The specimens were weighed before and after exposure to determine the oxidation rate. All specimens were inspected visually, and a smaller group of coated specimens were studied using secondary electron microscopy (SEM). The integrity of the coating, and the morphology and composition of the thermally grown oxide were especially of interest for the SEM investigation. This paper presents the up-to-date results of the testing coated and uncoated superalloys in sCO2 at up to 1150 °C and up to 300 bar performed at Southwest Research Institute.
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Bocher, Florent [Southwest Research Institute, San Antonio, TX (United States)], Marshall, Michael [Southwest Research Institute, San Antonio, TX (United States)], Moore, Jeffrey [Southwest Research Institute, San Antonio, TX (United States)]. 2026-03-03. Oxidation of Materials and Coatings at 1000°C and 250 bar for use in Oxy-Combustion Turbine. https://www.osti.gov/biblio/3375480
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