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December 4, 2025Applied Sciences2 citationsOpen Access

Effect of Multilayer Cr/CrN Coatings Deposited by Magnetron Sputtering on the Thermal Stability and High-Temperature Steam Oxidation Resistance of Zirconium Alloy E110

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NMNazerke MuktanovaMKMadina KametBRBauyrzhan Rakhadilov

Key Points

  • Improved thermal stability observed with multilayer Cr/CrN coatings, enhancing oxidation resistance.
  • Analysis through scanning electron microscopy revealed a dense structure in coatings with increased sublayers.
  • Greater number of alternating Cr/CrN sublayers maintained cubic phase and reduced interdiffusion with Zr.
  • Findings highlight the potential of multilayer coatings in advancing high-temperature materials.

Abstract

The effect of the multilayer structure of Cr/CrN coatings deposited by reactive magnetron sputtering on zirconium alloy E110 (Zr–1Nb) on their thermal stability and resistance to steam oxidation at 1100 °C was studied. Coatings with different numbers of alternating Cr and CrN sublayers (1, 2, 4, and 6) were fabricated using experimental methods of X-ray diffraction (XRD) and scanning electron microscopy with energy-dispersive analysis (SEM/EDS). It was shown that an increase in the number of alternating Cr and CrN sublayers leads to the preservation of the cubic phase of CrN, the formation of a dense structure, and a decrease in Cr–Zr interdiffusion. After testing, multilayer coatings retaining the internal structure and a sufficiently structurally dense Cr2O3 layer effectively ensured air penetration. The best thermal stability was demonstrated by a six-layer coating, ensuring minimal oxidation and preservation of the E110 substrate.

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Cite This Study

Muktanova et al. (2025) studied this question.

synapsesocial.com/papers/6930e8d7ea1aef094cca3bb7https://doi.org/10.3390/app152312773
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