Stress corrosion cracking (SCC) of copper and copper-based alloys
Author:
Publisher
Elsevier
Link
http://woodhead.metapress.com/index/M369794N18Q56736.pdf
Reference36 articles.
1. Stress corrosion in copper-nickel alloys: influence of ammonia;Agarwal;British Corrosion Journal,2002
2. Effect of ammonia concentration on environment-assisted failure in a low-nickel copper alloy;Agarwal;Practical Failure Analysis,2003
3. Effect of ammonia and sulphide environment on 90/10 and 70/30 cupronickel alloy;Agarwal;Journal of Failure Analysis and Prevention,2009
4. Mitigation of ammonia-induced SCC in a cupronickel alloy by additions of MgCl2 part 2: role of MgCl2 concentration in a cupronickel alloy exposed to 10% ammonia;Agarwal;Journal of Failure Analysis and Prevention,2005
5. Electrochemical and stress corrosion cracking behavior of 67Cu–33Zn alloy in aqueous electrolytes containing chloride and nitrite ions: effect of di-sodium hydrogen phosphate (DSHP);Allam;Materials Science and Engineering, B,2009
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