Published August 1995 | Version v1
Journal article

Effects of surface chromium depletion on localized corrosion of alloy 825 as a high-level nuclear waste container material

  • 1. Southwest Research Institute, San Antonio, TX (United States). Center for Nuclear Waste Regulatory Analyses

Description

Effects of the chromium-depleted, mill-finished surface on the localized corrosion resistance of alloy 825 (UNS N08825) were investigated. Tests were conducted in solutions based on the ground water at Yucca mountain, Nevada, but with a higher concentration of chloride. Results indicated that breakdown (Ep) and repassivation (Erp) potentials for mill-finished surfaces were more active than those for polished surfaces. Potentiodynamic polarization tests indicated pits could be initiated on the chromium-depleted surface at potentials of 220 mVSCE in a solution containing 1,000 ppm Cl- at 95 C. Potentiostatic tests identified a similar pit initiation potential for the mill-finished surface. However, under longterm potentiostatic tests, a higher potential of 300 mVSCE was needed to sustain stable pit growth beyond the chromium-depleted layer. An increase in surface roughness also was observed to decrease localized corrosion resistance of the material

Additional details

Publishing Information

Journal Title
Corrosion (Houston)
Journal Volume
51
Journal Issue
8
Journal Page Range
p. 618-624.
ISSN
0010-9312
CODEN
CORRAK