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STUDY OF STRUCTURAL-PHASE CHARACTERISTICS OF ZrCN COATINGS UNDER THE INFLUENCE OF HVOF PROCESS PARAMETERS

https://doi.org/10.53360/2788-7995-2026-1(21)-59

Abstract

This study investigates the effect of oxygen pressure during high-velocity oxy-fuel (HVOF) spraying on the formation and structural-phase characteristics of ZrCN coatings deposited on 65G steel. The coatings were produced using the Termika-3 system under fixed parameters of fuel, air flow, and spray distance, with oxygen pressure varied in the range of 4.0-4.5 bar. X-ray diffraction analysis revealed that the main coating matrix consists of a Zr(C,N) solid solution with a face-centered cubic lattice (Fm-3m). Increasing the O₂ pressure leads to partial thermal decomposition of ZrCN and the formation of ZrC, ZrN, and oxide phases such as t-ZrO2. Oxygen enrichment of the coatings results in grain refinement and lattice parameter expansion. The microhardness of the coatings (a-c) reaches 1512-1857 HV, which corresponds to an approximately fivefold increase relative to the initial sample. Based on the obtained results, it was shown that regulating the oxygen pressure in the HVOF jet significantly affects the phase composition, morphology, and adhesion quality, providing an optimal combination of hardness, ductility, and thermal stability.

About the Authors

Sh. R. Kurbanbekov
Khoja Akhmet Yassawi International Kazakh-Turkish University
Kazakhstan

Sherzod Rustambekovich Kurbanbekov – Director of the SRI «Natural Sciences, Nanotechnology and New Materials» 

161200, Turkestan, B. Sattarkhanova str., 29



D. R. Patchakhanov
Khoja Akhmet Yassawi International Kazakh-Turkish University
Kazakhstan

Diyar Ravshanuly Patchakhanov – Department of Physics, student 

161200, Turkestan, B. Sattarkhanova str., 29



S. Kh. Kambarbekov
Sarsen Amanzholov East Kazakhstan University
Kazakhstan

Sardor Khusnutdinovich Kambarbekov – First-year doctoral student 

070016, Ust-Kamenogorsk, 30th Guards Division Street, 36



B. S. Kaldar
Khoja Akhmet Yassawi International Kazakh-Turkish University
Kazakhstan

Berik Kaldar – Junior Researcher 

161200, Turkestan, B. Sattarkhanova str., 29



References

1. Microstructure and Mechanical Properties of ZrN, ZrCN and ZrC Coatings Grown by Chemical Vapor Deposition / F. Frank et al // Coatings. – 2021. – № 11(5). – R. 491. https://doi.org/10.3390/coatings11050491. (In English).

2. Shishkin R.A. The study of physico-chemical transformations in the process of low-temperature synthesis of zirconium carbide / R.A. Shishkin, V.S. Kudyakova, N.V. Zhirenkina // NOVYE OGNEUPORY (NEW REFRACTORIES). – 2019. – № 2. – R. 45-48. https://doi.org/10.17073/1683-4518-2019-2-45-48. (In English).

3. Electrochemical performance of TiCN coatings with low carbon concentration in simulated body fluid / Q. Wang et al // Surf. Coat. Technol. – 2014. – № 253. – R. 199-204. https://doi.org/10.1016/j.surfcoat.2014.05.037. (In English).

4. Improving the Efficiency of Air Plasma Spraying of Titanium Nitride Powder / A. Kengesbekov et al // Coatings. – 2022. – № 12(11). – 1644. https://doi.org/10.3390/coatings12111644. (In English).

5. Preparation and Characterization of NiCr/NiCr-Al₂O₃/Al₂O₃ Multilayer Gradient Coatings by Gas Detonation Spraying / B. Rakhadilov et al // Coatings. – 2021. – № 11(12). – R. 1524. https://doi.org/10.3390/coatings11121524. (In English).

6. Development and Studying of the Technology for Thermal Spraying of Coatings Made from Ultra-High-Molecular-Weight Polyethylene / M. Skakov et al // Coatings. – 2023. – № 13(4). – R. 698. https://doi.org/10.3390/coatings13040698. (In English).

7. Oksa M. Nickel- and iron-based HVOF thermal spray coatings for high temperature corrosion protection in biomass-fired power plant boilers / M. Oksa // Dissertation. Aalto University, 2015. https://publications.vtt.fi/pdf/science/2015/S74.pdf. (In English).

8. Tan J.C. Optimisation of the HVOF thermal spray process for coating, forming and repair of components. Doctoral dissertation, Dublin City University, 1997. (In English).

9. Protsessy formirovaniya gazotermicheskikh pokrytii i ikh modelirovanie. Minsk: Belarus. nauka, 2011. – 357 s. (In Russian).

10. Harrison R. Processing and Characterisation of ZrCxNy Ceramics as a Function of Stoichiometry via Carbothermic Reduction-Nitridation / R. Harrison // Doctoral dissertation, Imperial College London, 2015. (In English).

11. Larijani M.M. The effect of carbon fraction in Zr(C,N) films on the nano-structural properties and hardness / M.M. Larijani, M.B. Zanjanbar, A. Majdabadi // Journal of Alloys and Compounds. – 2010. – № 492(1-2). – R. 735-738. (In English).

12. Matrenin S.V. Struktura i fiziko-mekhanicheskie svoistva keramiki na osnove ZrCN / S.V. Matrenin, E.D. Kuz'menko // Innovatsionnye tekhnologii v mashinostroenii: sb. trudov XV Mezhdunarodnoi nauchno-prakticheskoi konferentsii. Tomsk: TPU, 2024. S. 13-15. (In Russian).

13. Carbides of transition metals: Properties, application and production. Review / Yu.L. Krutskii et al // Part 2. Chromium and zirconium carbides. Izvestiya. Ferrous Metallurgy. – 2023. – № 66(4). – R. 445-458. https://doi.org/10.17073/0368-0797-2023-4-445-458. (In English).

14. Ul-Hamid A. Synthesis, microstructural characterization and nanoindentation of Zr, Zr-nitride and Zr-carbonitride coatings deposited using magnetron sputtering / A. Ul-Hamid // Journal of Advanced Research. – 2021. – № 29. – R. 107-119. (In English).

15. Markov YU.M. Poluchenie karbonitrida tsirkoniya v rezhime SVS-Az / YU.M. Markov // Sovremennye materialy, tekhnika i tekhnologii. – 2017. – № 6 (14). – R. 88-93. (In Russian).

16. Matrenin S.V. Struktura i fiziko-mekhanicheskie svoistva keramiki na osnove ZrCN / S.V. Matrenin, E.D. Kuz'menko // Innovatsionnye tekhnologii v mashinostroenii: sbornik trudov XV Mezhdunarodnoi nauchno-prakticheskoi konferentsii, g. Yurga, 23-25 maya 2024 g. – R. 13-15. (In Russian).


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For citations:


Kurbanbekov Sh.R., Patchakhanov D.R., Kambarbekov S.Kh., Kaldar B.S. STUDY OF STRUCTURAL-PHASE CHARACTERISTICS OF ZrCN COATINGS UNDER THE INFLUENCE OF HVOF PROCESS PARAMETERS. Bulletin of Shakarim University. Technical Sciences. 2026;1(1(21)):538-547. (In Russ.) https://doi.org/10.53360/2788-7995-2026-1(21)-59

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