Obtaining of calcium-phosphate coatings on the titanium surface by micro-arc oxidation
DOI:
https://doi.org/10.31489/2023No1/34-41Keywords:
micro-arc oxidation (MAO), plasma electrolytic oxidation (PEO), nanoparticles, coatings, wear, titaniumAbstract
The results of experiments on obtaining calcium-phosphate coatings on substrates of titanium grade VT1-0 by micro-arc oxidation (MAO) are presented. The coatings were obtained by adding different amounts of titanium oxide nanoparticles to the electrolyte. The microstructure and tribological properties of calcium phosphate coatings were investigated. In conducted research results have been established and determined optimal modes and parameters for obtaining calcium phosphate coatings. It is shown that the addition of titanium oxide nanoparticles to the electrolyte can affect the structure also the strength of the obtained coatings. The research results led to conclude that such treatment of MAO from titanium alloys is promising to improve their splices with bone tissue.
References
Suminov I.V., et al. Microarc oxidation: theory, technology, equipment. Moscow, 2005, 368 p. [in Russian].
Chernenko V.I., et al. Obtaining of coatings by anodic-spark electrolysis. Chemistry. 1991, 128 p. [in Russian]
Shandrov B.V., et al. Fundamentals of micro-arc oxidation technology. Moscow, 2008, 80 p. [in Russian]
Rakhadilov B., Baizhan D., Creation of Bioceramic Coatings on the Surface of Ti–6Al–4V Alloy by Plasma Electrolytic Oxidation Followed by Gas Detonation Spraying. Coatings. 2021. 11, No. 1433, doi:10.3390/coatings11121433
Sharkeev Yu. P., E. V. Legostaeva, A. Yu. Eroshenko, I. A. Khlusov, O. A. Kashin, The Structure and Physical and Mechanical Properties of a Novel Biocomposite Material, Nanostructured Titanium-Calcium-Phosphate Coating. Composite Interfaces. 2009, Vol.16, pp. 535 – 546.
Rakhadilov, B.K., Sagdoldina, Z.B., Baizhan, D.R., et al. Obtaining of hydroxyapatite coatings on A titanium substrate by detonation-gas spraying. Eurasian phys. tech. j. 2021, Vol.18, pp. 30 – 36.
Ivanov M.B., Kolobov Yu.R., Golosov E.V., et al. Mechanical properties of mass-produced nanostructured titanium. Russian nanotechnology. 2011, Vol.6, No.5-6, pp. 108 – 114. [in Russian]
Gnedenkov S.V., Sharkeyev Y.P., Sinebryukhov S.L., et al. Calcium-phosphate bioactive coatings on titanium. Bulletin of FEB RAS, 2010, Vol.5, pp. 47 – 57. [in Russian]
Suminov I. V., Belkin P. N., Epelfeld A. V., et al. Plasma-electrolytic modification of surfaces of metals and alloys. Part. 2. Moscow, Technosphere Publisher, 2011, 512 p. [in Russian]
Shashkina G. A. Calcium-phosphate coating by micro-arc method. Structure and properties of biocomposite based on titanium with calcium-phosphate coatings. Diss. of the candidate of technical sciences degree. Tomsk, 2006, 184 p. [in Russian]
Lyubimov V.V., Sundukov V.K., Gavrilin V.I. Effect of micro-arc oxidation modes on the roughness and wear resistance of coatings. Proceedings of the scientific and technical conference “Modern electrotechnology in industry of Central Russi”. Tula State University, 2003. 126-130. [in Russian]
Chichinadze А.V., et al. Friction, Wear and Lubrication (Tribology and Tribotechnics). Moscow: Machinostroenie, 2003, 576 p. [in Russian]