CORROSION BEHAVIOR OF NI-BASE ALLOYS IN SUPERCRITICAL WATER
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering
Reference15 articles.
1. Effect of transient thermal cycles in a supercritical water-cooled reactor on the microstructure and properties of ferritic–martensitic steels
2. Corrosion behavior of ferritic–martensitic steel T91 in supercritical water
3. Oxidation behavior of iron-based alloy HCM12A exposed in supercritical water
4. Corrosion and corrosion fatigue behaviors of 9cr steel in a supercritical water condition
5. Characterization of oxide films grown on 316L stainless steel exposed to H2O2-containing supercritical water
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1. Corrosion damages of nickel-based alloy G3 in 600 °C H2O CO2H2S H2 steam;Corrosion Communications;2024-09
2. Corrosion behavior of a dual-phase FeNiCrCuAl high entropy alloy in supercritical water;Corrosion Science;2022-11
3. Corrosion characteristics and mechanisms of typical iron/nickel-based alloys in reductive supercritical water environments containing sulfides;The Journal of Supercritical Fluids;2022-08
4. The microstructure evolving and element transport of Ni-based laser-cladding layer in supercritical water;Corrosion Science;2022-04
5. Oxidation Behaviour of Ni-Base Superalloys in Supercritical Water: A Review;Journal of the Indian Institute of Science;2022-01
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