September 2016

Journal

Thermochemical Compatibility and Oxidation Resistance of Advanced LWR Fuel Cladding

By:
Besmann, Theodore M; Yamamoto, Yukinori ; Unocic, Kinga A
Journal Name:
Nuclear Technology
Page Number:
181-191
Volume:
195
Issue Number:
2
Publication Date:
September 23, 2016
View DOI Listing:
https://doi.org/10.13182/NT15-132

Abstract

The thermochemical compatibility of potential replacement cladding materials for zirconium alloys in light water reactors was assessed. Considered were FeCrAl steel (similar to Kanthal APMT), Nb-1%Zr (similar to PWC-11), and a hybrid SiC-composite with a metallic barrier layer. The niobium alloy was also seen as requiring an oxidation protective layer, and a diffusion silicide was investigated. Metallic barrier layers for the SiC-composite reviewed included a FeCrAl alloy, Nb-1%Zr, and chromium. Thermochemical calculations were performed to determine oxidation behavior of the materials in steam, and for hybrid SiC-composites possible interactions between the metallic layer and SiC. In addition, experimental exposures of SiC-alloy reaction couples at 673K, 1073K, and 1273K for 168 h in an inert atmosphere were made and microanalysis performed. Whereas all materials were determined to oxidize under higher oxygen partial pressures in the steam environment, these varied by material with expected protective oxides forming. The computed and experimental results indicate the formation of liquid phase eutectic in the FeCrAl-SiC system at the higher temperatures.


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