An electrochemical study assisting the interpretation of acid sulfate stress corrosion cracking of NiCrFe alloys

Author:

Persaud S.Y.,Carcea A.G.,Newman R.C.

Funder

University Network of Excellence in Nuclear Engineering

Natural Sciences and Engineering Research Council of Canada

Publisher

Elsevier BV

Subject

General Materials Science,General Chemical Engineering,General Chemistry

Reference27 articles.

1. Electrochemical aspects of stress corrosion cracking of Ni–Fe–Cr alloys in acid sulfate solutions relevant to nuclear steam generators;Persaud;ECS Trans.,2013

2. Analytical electron microscopy of a crack tip extracted from a stressed alloy 800 sample exposed to an acid sulfate environment;Persaud;Micron,2014

3. D. Gomez-Briceno, M.S. Garcia-Redondo, F. Hernandez, Update of alloy 800 behaviour in secondary side of PWR steam generators, in: Proc. of Fontevraud 7 – Contribution of Materials Investigations to Improve the Safety and Performance of LWRs, SFEN French Nuclear Energy Society, Avignon, France, 2010, Paper A079–T06.

4. Effect of sulphate and chloride ions on the crevice chemistry and stress corrosion cracking of alloy 600 in high temperature aqueous solutions;Yang;Corros. Sci.,1992

5. Quantitative assessment of submodes of stress corrosion cracking on the secondary side of steam generator tubing in pressurized water reactors: Part 1;Staehle;Corrosion,2003

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