STUDY OF TRIBOLOGICAL PROPERTIES OF BIOCOATINGS BY DETONATION SPRAYING METHOD
https://doi.org/10.53360/2788-7995-2026-2(22)-57
Abstract
In this study, bioactive hydroxyapatite coatings were deposited on commercially pure Grade 2 titanium substrates by detonation spraying at different O₂/C₂H₂ ratios in the range of 2.6-3.7. X-ray diffraction analysis confirmed the predominance of the hydroxyapatite phase with partial formation of α-tricalcium phosphate, which is attributed to high temperatures and intense dynamic processes in the detonation jet. The formed coatings exhibit pronounced hydrophobicity, high structural heterogeneity, and a well-developed surface microrelief, promoting improved interaction with bone tissue and accelerated osseointegration. Tribological tests conducted under dry conditions and in Ringer’s solution demonstrated a significant increase in wear resistance compared to uncoated Grade 2 titanium. The best friction characteristics and the lowest wear volume were observed for coatings deposited at O₂/C₂H₂ ratios of 3.0 and 3.3, which is associated with an optimal combination of crystallinity, phase composition, and adhesion strength. Coatings formed under these conditions provide stable tribological behavior in physiological environments. The obtained results confirm the prospects of detonation-sprayed hydroxyapatite for improving the durability, biocompatibility, and operational reliability of titanium implants.
Keywords
About the Authors
Zh. B. SagdoldinaKazakhstan
Zhuldyz Bolatkizy Sagdoldina – PhD, Associate Professor, senior Researcher, 070002, Ust-Kamenogorsk, Shakarima Street, 148;
071412, Semey, 20 A Glinka Street
D. R. Baizhan
Kazakhstan
Daryn Rashituly Baizhan – senior Researcher, 070002, Ust-Kamenogorsk, Shakarima Street, 148;
071412, Semey, 20 A Glinka Street
T. Alimbekuly
Kazakhstan
Temirlan Alimbekuly – Junior researcher,
070002, Ust-Kamenogorsk, Shakarima Street, 148
A. E. Alibekov
Kazakhstan
Aibek Erkebulanuly Alibekov – engineer researcher,
070002, Ust-Kamenogorsk, Shakarima Street, 148
References
1. 3D printing technologies in metallic implants: a thematic review on the techniques and procedures / S. Attarilar et al // International Journal of Bioprinting. – 2020. – Vol.7, № 1. – P. 306.
2. Chen Q. Metallic implant biomaterials / Q. Chen, G.A. Thouas // Materials Science and Engineering: R: Reports. – 2015. – Vol.87. – P. 1-57.
3. Latest trends in surface modification for dental implantology: Innovative developments and analytical applications / F. Accioni et al // Pharmaceutics. – 2022. – Vol.14, № 2. – P. 455.
4. Titanium and zirconium release from titanium-and zirconia implants in mini pig maxillae and their toxicity in vitro / X. He et al // Dental Materials. – 2020. – Vol.36, №. 3. – P. 402-412.
5. Nicholson, J. Titanium alloys for dental implants: A review / J. Nicholson // Prosthesis. – 2020. – Vol. 2. – № 2. – P. 11.
6. Biomimetic coatings in implant dentistry: A quick update / M.A. Abdulghafor et al // Journal of Functional Biomaterials. – 2023. – Vol. 15, № 1. – P. 15.
7. Nano-structure designing promotion osseointegration of hydroxyapatite coated Ti–6Al–4V alloy implants in diabetic model / Z. Hu et al //Journal of biomedical nanotechnology. – 2019. – Vol. 15. – №. 8. – P. 1701-1713.
8. Study of the Structural-Phase State of Hydroxyapatite Coatings Obtained by Detonation Spraying at Different O2/C2H2 Ratios / D. Baizhan et al // Crystals. – 2023. – Vol. 13, № 11. – P. 1564.
9. A review on the wettability of dental implant surfaces I: theoretical and experimental aspects / F. Rupp et al // Acta biomaterialia. – 2014. – Vol. 10, № 7. – P. 2894-2906.
10. The effect of the electrolyte composition on the microstructure and properties of coatings formed on a titanium substrate by microarc oxidation / B. Rakhadilov et al // AIMS Materials Science. – 2024. – Т. 11, № 3. – P. 547-564.
11. Jadidi M. A Comprehensive Review on Fluid Dynamics and Transport of Suspension/Liquid Droplets and Particles in High-Velocity Oxygen-Fuel (HVOF) Thermal Spray / M. Jadidi, S. Moghtadernejad, A. Dolatabadi // Coatings. – 2015. – Vol. 5. – P. 576-645.
12. Obtaining of hydroxyapatite coatings on a titanium substrate by detonation-gas spraying / B. Rakhadilov et al // Eurasian Physical Technical Journal. – 2021. – 18(37). – P. 30-36.
13. Phase Evolution of Hydroxapatite Coatings Suspension Plasma Sprayed Using Variable Parameters in Simulated Body Fluid / R. d’Haese et al // Surface and Coatings Technology. – 2010. – 204. – P. 1236-1246.
14. Effects of Micro-Arc Oxidation Process Parameters on Characteristics of Calcium-Phosphate Containing Oxide Layers on the Selective Laser Melted Ti13Zr13Nb Alloy / M. Dziaduszewska et al // Coatings. – 2020. – № 10. – Р. 745.
15. Properties of gas detonation ceramic coatings and their effect on the osseointegration of titanium implants for bone defect replacement / N.I. Klyui et al // Ceramics International. – 2021. – № 47. – P. 25425-25439.
16. Influence of Detonation Spraying Parameters on the Microstructure and Mechanical Properties of Hydroxyapatite Coatings / Z. Sagdoldina et al // Materials. – 2024. – № 17(21). – Р. 5390. https://doi.org/10.3390/ma17215390.
Review
For citations:
Sagdoldina Zh.B., Baizhan D.R., Alimbekuly T., Alibekov A.E. STUDY OF TRIBOLOGICAL PROPERTIES OF BIOCOATINGS BY DETONATION SPRAYING METHOD. Bulletin of Shakarim University. Technical Sciences. 2026;(2(22)):534-542. https://doi.org/10.53360/2788-7995-2026-2(22)-57
JATS XML















