Nonlinear trending of corrosion of high nickel alloys in extended marine and atmospheric exposures

Author:

Melchers Robert E.1ORCID

Affiliation:

1. Centre for Infrastructure Performance and Reliability , The University of Newcastle , Callaghan , Australia

Abstract

AbstractThe relatively limited data for the corrosion and pitting of high nickel alloys are reviewed herein and time-dependent trends developed for exposures in marine and atmospheric environments. Data sets for average or ‘uniform’ corrosion losses that are sufficiently extensive show topological consistency with the bimodal functional model previously observed for steels and various copper-nickel and aluminum alloys. Trends for localized corrosion (pit or crevice depth) plateau after earlier rapid growth over several years. The present observations add support to the concept that there is a change in corrosion behavior with extended temporal exposure and that this is generally consistent for many alloys. They also reinforce that shorter-term observations of maximum corrosion or pit depth usually is unsuited for extrapolation to, and prediction of, longer-term corrosion as typically important for practical infrastructure applications.

Funder

Australian Research Council

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science,General Chemical Engineering,General Chemistry

Reference42 articles.

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2. Asphahani, A.I. (1980). Corrosion resistance of high performance alloys. Mater. Perform. 19: 33–43.

3. ASTM (1946). Symposium on atmospheric exposure tests on non-ferrous metals, Appendix B report of subcommittee VI on atmospheric corrosion of non-ferrous metals and alloys, American Society for testing and materials, February 27, 1946. American Society for Testing Materials, Philadelphia, pp. 112–145.

4. Chaves, I.A. and Melchers, R.E. (2011). Pitting corrosion in pipeline steel welds zones. Corros. Sci. 53: 4026–4032, https://doi.org/10.1016/j.corsci.2011.08.005.

5. Combrade, P. (2012). Crevice corrosion of metallic materials. In: Marcus, P. (Ed.). Corrosion mechanisms, 3rd ed. CRC, Roca Baton, pp. 449–498.

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