Effect of thickness on degradation of austenitic 347H steel by direct-fired supercritical CO2 power cycle environment

Author:

Akanda Sajedur R.,Oleksak Richard P.,Repukaiti ReyixiatiORCID,Rozman Kyle A.,Doğan Ömer N.

Funder

Office of Fossil Energy

Oak Ridge Institute for Science and Education

U.S. Department of Energy

National Energy Technology Laboratory

Publisher

Elsevier BV

Subject

General Materials Science,General Chemical Engineering,General Chemistry

Reference33 articles.

1. Materials performance in CO2 and supercritical CO2;Oleksak,2020

2. H.J. Grabke , Carburization: a high temperature corrosion phenomenon, MTI Publication No. 52, Materials Technology Institute of the Chemical Process Industries, St. Louis, MO, 1998.

3. High Temperature Oxidation and Corrosion of Metals;Young,2016

4. In situ stress observation in oxide films and how tensile stress influences oxygen ion conduction;Fluri;Nat. Commun.,2016

5. Thin Film Materials: Stress, Defect Formation and Surface Evolution;Freund,2004

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