Chemical and mechanical analysis of hard coatings exposed under the supercritical CO2 Venus atmospheric surface conditions

Author:

Tsigkis VasilisORCID,Polycarpou Andreas A.

Funder

Glenn Research Center

Small Business Innovation Research

Publisher

Elsevier BV

Subject

Space and Planetary Science,Aerospace Engineering,General Earth and Planetary Sciences,Atmospheric Science,Geophysics,Astronomy and Astrophysics

Reference26 articles.

1. Costa, G., Jacobson, N.S., Lukco, D. et al., 2017. Chemical and Microstructural Changes in Metallic and Ceramic Materials Exposed to Venusian Surface Conditions. Nasa/Tm—2017-219437. https://ntrs.nasa.gov/api/citations/20170006025/downloads/20170006025.pdf.

2. Oxidation behavior of stainless steels 304 and 316 under the Venus atmospheric surface conditions;Costa;Corros. Sci.,2018

3. Corrosion of alumina-forming austenitic alloys under the supercritical carbon dioxide-based Venus atmospheric surface conditions;Costa;Corros. Sci.,2023

4. DellaCorte, C., Edmonds, B.J., 2009. NASA PS400: A New High Temperature Solid Lubricant Coating for High Temperature Wear Applications. Nasa Tm-2009-215678 1–15. https://ntrs.nasa.gov/api/citations/20090033769/downloads/20090033769.pdf.

5. Dellacorte, C., Stanford, M.K., Thomas, F., Edmonds, B.J., 2010. The Effect of Composition on the Surface Finish of PS400: A New High Temperature Solid Lubricant Coating. https://ntrs.nasa.gov/api/citations/20100033739/downloads/20100033739.pdf.

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