Influence of light ion irradiation of the oxide layer on the oxidation rate of zircaloy-4: Irradiation of the post-transition oxide layer

Author:

Tupin Marc,Venague Boris,Gutierrez Gaëlle

Funder

EDF

FRAMATOME

Publisher

Elsevier BV

Subject

General Materials Science,General Chemical Engineering,General Chemistry

Reference49 articles.

1. Performance of alloy M5TM cladding and structure;Garner,2007

2. Comparison of the high burn-up corrosion on M5 and low tin Zircaloy-4;Bossis;Zirconium in the Nuclear Industry: 14th International Symposium, ASTM STP 1467,2005

3. Detrimental role of hydrogen on the corrosion rate of zirconium alloys;Blat;Zirconium in the Nuclear Industry: 11th International Symposium, ASTM STP 1295,1996

4. Contribution to a better understanding of the detrimental role of hydrogen on the corrosion rate of Zircaloy-4 cladding materials;Blat;Zirconium in the Nuclear Industry: 12th International Symposium, ASTM STP 1354,2000

5. Mechanism of corrosion of zirconium hydride and impact of precipitated hydrides on the Zircaloy-4 corrosion behaviour

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1. Investigations of ion irradiation induced surface damage features in zirconium alloys by atomic force microscopy;Materials Letters: X;2022-03

2. Corrosion Characteristics of Candidate Alloys;Corrosion Characteristics, Mechanisms and Control Methods of Candidate Alloys in Sub- and Supercritical Water;2021-12-08

3. Oxide growth and oxygen transport in proton irradiated Zircaloy-4 oxide layers;Corrosion Science;2021-09

4. Corrosion of FeCrAl alloys used as fuel cladding in nuclear reactors;Journal of Alloys and Compounds;2021-07

5. Effects of irradiation defects on the adsorption of oxygen on 3C-SiC low index surfaces;Computational Materials Science;2021-04

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