Long-term prediction of localized corrosion of high-level nuclear waste container materials is a necessary step in the performance assessment of the engineered barrier system. Localized corrosion of corrosion-resistant materials may occur if the containers are exposed to chloride (Cl–)-containing ground water at elevated temperatures. Potentiostatic tests conducted on alloy 825 (UNS N08825), a candidate container material, have shown that the potential at which localized corrosion can be initiated is a function of surface conditions and exposure time. The initiation potentials for localized corrosion measured in short-term tests with polished specimens overestimated the long-term initiation potentials by as much as 300 mV. On the other hand, the repassivation potential obtained from short-term tests on deep pits can be used to predict the initiation of localized corrosion in long-term tests.
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1 February 1996
Research Article|
February 01 1996
Long-Term Prediction of Localized Corrosion of Alloy 825 in High-Level Nuclear Waste Repository Environments Available to Purchase
G.A. Cragnolino
G.A. Cragnolino
*Center for Nuclear Waste Regulatory Analyses, 6220 Culebra Road, San Antonio, TX, 78238-5166.
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Online ISSN: 1938-159X
Print ISSN: 0010-9312
NACE International
1996
CORROSION (1996) 52 (2): 115–124.
Citation
D.S. Dunn, N. Sridhar, G.A. Cragnolino; Long-Term Prediction of Localized Corrosion of Alloy 825 in High-Level Nuclear Waste Repository Environments. CORROSION 1 February 1996; 52 (2): 115–124. https://doi.org/10.5006/1.3292102
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