The influence of the air fraction in steam on the growth of the columnar oxide and the adjacent α-Zr(O) layer on Zry-4 fuel cladding at 1273 and 1473 K
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering
Reference51 articles.
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2. The breakaway oxidation of zirconium and its alloys. A review;Ahmed;J. Less Common Met.,1975
3. Diffusion of nitrogen in α-Zr and α-Hf;Anttila;J. Less Common Met.,1984
4. Modelling of Zry-4 cladding oxidation by air, under severe accident conditions using the MAAP4 code;Beuzet;Nucl. Eng. Des.,2011
5. Cladding oxidation during air ingress. Part II: Synthesis of modelling results;Beuzet;Ann. Nucl. Energy.,2016
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1. Effects of oxide layers on zirconium alloy-steam reaction;Journal of Radiation Research and Applied Sciences;2023-09
2. Investigation of the oxidation behavior of Zircaloy-4 cladding in a mixture of air and steam;Journal of Nuclear Materials;2023-03
3. Investigation of Breakaway Time Delay Phenomenon in Isothermal Test with Zircaloy-4 under Oxygen Atmosphere at 1000 °C;Applied Sciences;2022-03-10
4. The Effect of Air Fraction in Steam on the Embrittlement of Zry-4 Fuel Cladding Oxidized at 1273–1573 K;Oxidation of Metals;2019-10-24
5. The effect of nitride formation on the oxidation kinetics of Zry-4 fuel cladding under steam-air atmospheres at 1273–1573 K;Journal of Nuclear Materials;2019-10
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