Published 2016 | Version v1
Book

Influence of hydride precipitation on the corrosion kinetics of Zircaloy-4: effect of the nano-structure and grain boundary properties of the zirconium oxide layer on oxygen diffusion flux - 2016-0073

  • 1. CEA, Universite Paris-Saclay, DEN-Service d'Etudes des Materiaux Irradies,, F-91191, Gif-sur-Yvette (France)
  • 2. CEA, Universite Paris-Saclay, CEA-DEN-SEMT, F-91191, Gif-sur-Yvette (France)
  • 3. Universite Paris-Sud 11, SP2M-ICMMO, CNRS UMR 8182, F-91405 Orsay (France)
  • 4. EDF R and D, Centre des Renardieres, Ecuelles, 77818 Moret-sur-Loing (France)

Description

Hydride precipitation at the oxide-metal interface is frequently proposed as causing the corrosion acceleration of Zircaloy-4 at high burnup in pressurized water reactors (PWRs). In order to identify the local mechanisms possibly involved, we studied the nano-structure of oxides formed on massive zirconium hydrides and reference Zircaloy-4 with an innovative grain mapping technique with the use of transmission electron microscopy (TEM). In autoclave PWR-conditions, the presence of a precipitated hydride phase, previously formed by a cathodic charging technique at the surface of Zircaloy-4, clearly increased the corrosion rate, and a higher oxygen diffusion flux along oxide grain boundaries is observed compared with the reference Zircaloy-4. The texture, grain size, and adjacent grain misorientation in the oxide layer were studied in detail along the direction of the oxide growth using an automated crystal orientation mapping technique associated with TEM for both pre-hydrided and reference Zircaloy-4 samples. The texture in the growth direction is similar on pre-hydrided and reference samples, but the grain-to-grain mis-orientations showed differences. Indeed, on the pre-hydrided sample, the misorientation of 90 deg. C with respect to the [001] monoclinic axis is less probable than in the reference oxide, and more mis-orientations of 50-70 deg. C and 120-150 deg. C, corresponding to larger mismatches between neighboring grain boundaries, are observed. A smaller average diameter of the columnar monoclinic grains is also clearly revealed for the oxide grown on the pre-hydrided sample that leads to a larger number of diffusion paths for oxidizing species. These results are discussed and used for simulating oxygen diffusion flux through the polycrystalline microstructure of the oxide layer as a function of the grain size. (authors)

Availability note (English)

Available from doi: http://dx.doi.org/10.1520/STP159720160073

Additional details

Identifiers

Publishing Information

Publisher
ASTM International
Imprint Place
West Conshohocken, PA (United States)
Imprint Pagination
35 p.

Conference

Title
18. International Symposium on Zirconium in the Nuclear Industry
Dates
15-19 May 2016
Place
Hilton Head, SC (United States)

Optional Information

Notes
37 refs.