Please use this identifier to cite or link to this item: http://earchive.tpu.ru/handle/11683/74796
Title: High-Temperature Steam Oxidation of Accident-Tolerant Cr/Mo-Coated Zr Alloy at 1200–1400 °C
Authors: Syrtanov, Maksim Sergeevich
Kashkarov, Egor Borisovich
Abdulmenova, Anastasiya Vladimirovna
Gusev, Kirill Sergeevich
Sidelev, Dmitry Vladimirovich
Keywords: high-temperature oxidation; zirconium alloys; molybdenum; accident tolerant fuel (ATF); magnetron sputtering; Cr-Zr interdiffusion
Issue Date: 2023
Publisher: MDPI AG
Citation: High-Temperature Steam Oxidation of Accident-Tolerant Cr/Mo-Coated Zr Alloy at 1200–1400 °C / M. S. Syrtanov, E. B. Kashkarov, A. V. Abdulmenova [et al.] // Coatings. — 2023. — Vol. 13, iss. 1. — [191, 15 p.].
Abstract: The oxidation resistance under LOCA conditions of bilayer Cr/Mo coating deposited on Zr-1Nb zirconium alloy was investigated in this paper. The bilayer Cr (8 ?m)/Mo (3 ?m) coatings were deposited by magnetron sputtering. Then, oxidation resistance under high-temperature oxidation at 1200–1400 °C in a water steam was studied. The use of a Mo sublayer resulted in limiting Cr-Zr interdiffusion under high-temperature oxidation. It was shown that the Mo barrier sublayer (~3 ?m) can provide the protective behavior of the Cr/Mo-coated Zr at 1330 °C in a water steam for at least 720 s. The weight gain of the bilayer Cr/Mo samples was comparable with the monolayer Cr samples after oxidation at 1400 °C. In addition, the analysis of the Cr/Mo-coated Zr alloy oxidation behavior at 1400 °C was carried out.
URI: http://earchive.tpu.ru/handle/11683/74796
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