Crystal Structure of the ZrO Phase at Zirconium/Zirconium Oxide Interfaces

Rebecca J. Nicholls, Na Ni, Sergio Lozano‐Perez, Andrew London, David W. McComb, Peter D. Nellist, C.R.M. Grovenor, Chris J. Pickard, Jonathan R. Yates

Advanced Engineering Materials · 2014 · 90 citations · 24 references

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Abstract

Zirconium-based alloys are used in water-cooled nuclear reactors for both nuclear fuel cladding and structural components. Under this harsh environment, the main factor limiting the service life of zirconium cladding, and hence fuel burn-up efficiency, is water corrosion. This oxidation process has recently been linked to the presence of a sub-oxide phase with well-defined composition but unknown structure at the metal-oxide interface. In this paper, the combination of first-principles materials modeling and high-resolution electron microscopy is used to identify the structure of this sub-oxide phase, bringing us a step closer to developing strategies to mitigate aqueous oxidation in Zr alloys and prolong the operational lifetime of commercial fuel cladding alloys.

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