Abstract
To clarify the mechanism of localized corrosion on zirconium in chloride environments, corrosion tests of zirconium and its alloys were performed using conventional and micron-scale measurement systems with surface areas of 0.35 cm 2 and less than 0.04 cm 2 , respectively. The pitting potential significantly dropped by more than 1 V when zirconium was alloyed with over 10 mol% of tin. Zr 4 Sn and Zr 5 Sn 3 intermetallics hindered the formation of passive films on the substrate. Additionally, tin was found on the surface of a commercially pure zirconium. From the micron-scale measurement results, the inclusion with the highest concentration of tin (at least 0.44 mol%) in the tested area was selected as the preferential initiation site for pitting corrosion. Thus, tin played an important role in determining the corrosion resistance of zirconium in chloride environments.
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CITATION STYLE
Tsutsumi, Y., Muto, I., Nakano, S., Tsukada, J., Manaka, T., Chen, P., … Hanawa, T. (2020). Effect of Impurity Elements on Localized Corrosion of Zirconium in Chloride Containing Environment. Journal of The Electrochemical Society, 167(14), 141507. https://doi.org/10.1149/1945-7111/abc5d8
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