4.7 Article

Vacuum-arc chromium-based coatings for protection of zirconium alloys from the high-temperature oxidation in air

Journal

JOURNAL OF NUCLEAR MATERIALS
Volume 465, Issue -, Pages 400-406

Publisher

ELSEVIER
DOI: 10.1016/j.jnucmat.2015.06.016

Keywords

Zirconium; Oxidation; Zirconium oxide; Vacuum arc; Coatings

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Multilayer Cr-Zr/Cr/Cr-N coatings for protection of zirconium alloys from the high-temperature oxidation in air have been obtained by the vacuum-arc evaporation technique with application of filters for plasma cleaning from macroparticles. The effect of the coatings on the corrosion resistance of zirconium alloys at test temperatures between 660 and 1100 degrees C for 3600 s has been investigated. The thickness, structure, phase composition, mechanical properties of the coatings and oxide layers before and after oxidation tests were examined by scanning electron microscopy, X-ray diffraction analysis and nanoindentation technique. It is shown that the hard multilayer coating effectively protects zirconium from the oxidation in air for 1 h at test temperatures. As a result of the oxidation in the coating the CrO and Cr2O3 oxides are formed which reduce the oxygen penetration through the coating. At maximum test temperature of 1100 degrees C the oxide layer thickness in the coating is about 5 mu m. The tube shape remains unchanged independent of alloy type. It has been found that uncoated zirconium oxidizes rapidly throughout the temperature range under study. At 1100 degrees C a porous monoclinic ZrO2 oxide layer of >= 120 mu m is formed that leads to the deformation of the samples, cracking and spalling of the oxide layer. (C) 2015 Elsevier B.V. All rights reserved.

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