Calcium-phosphate coatings obtained by microarc oxidation (review)

Author:

Zhassulan A. Zh.1ORCID,Sagdoldina Zh. B.1ORCID,Mukhametov E. M.1ORCID,Ormanbekov K. D.1,Shynarbek A. B.1

Affiliation:

1. Shakarim University of Semey, Scientific center «Surface modification of materials»

Abstract

This literature review examines the topic of microarc oxidation of calcium phosphate coatings, which has received considerable attention in recent years due to its potential application in biomedical and engineering fields. The advantages of the microarc oxidation method for obtaining protective coatings are described. The main attention is paid to the formation of coatings under various modes of the microarc oxidation process and with the help of electrolytes containing suspended powders of various elements and concentrations. The review examines various aspects of the technology, including the underlying principles, the types of coatings that can be obtained, and the methods used to determine the characteristics. In addition, the review examines the potential applications of microarc oxidation in calcium phosphate coatings in various fields, such as biomedical implants, aerospace components and tissue engineering. It discusses the advantages of coatings, such as improved osseointegration, corrosion resistance and wear protection, as well as the potential for the inclusion of bioactive molecules in coatings to further improve their performance. Overall, the review concluded that calcium phosphate coatings have great potential for various applications, but further research is needed to fully understand the potential of this innovative technology and optimize its performance for specific applications.

Publisher

Shakarim University

Reference19 articles.

1. Krishtal M.M., Ivashin P.V., Polunin A.V. The use of micro-arc oxidation technology (MAO) of aluminum and titanium alloys to improve the performance characteristics of parts in engine building // Bulletin of SSAU. 2011. – № 3-2. URL: https://cyberleninka.ru/article/n/primenenie-tehnologii-mikrodugovogo-oksidirovaniya-mdo-alyuminievyh-i-titanovyh-splavov-dlya-uluchsheniya-ekspluatatsionnyh. (In Russian).

2. Volokhova A.A., Soldatova E.A., Churina E.G., Laput O.A., Tverdokhlebov S.I. The use of electrolytes with dissolved biodegradable polymers to obtain bioactive calcium phosphate coatings by microarc oxidation // Bulletin of Tomsk State University. Chemistry. – 2020. – № 19. URL: https://cyberleninka.ru/article/n/primenenie-elektrolitov-s-rastvorennymi-biodegradiruemymi-polimerami-dlya-polucheniya-bioaktivnyh-kaltsiy-fosfatnyh-pokrytiy. (In Russian).

3. Bai Wu, Zhou R, Cao J, Wei D, Du Q, Li B, Wang Wu, Jia D, Zhou Yu. Microarc oxidative coating covered Ti implants with micro-scale notches formed as a result of multi-stage processing to improve osseointegration. Mater Sci Eng C Mater Biol Appl. 2017, July 1;76:908-917. doi:10.1016/j.msec.2017.03.071. Epub 2017, March 14. PMID: 28482606. (In English).

4. Shatalov V.K., Shtokal A.O., Rykov E.V., Conscientiously K.B. Application of microarc oxidation methods in the creation of structural elements of spacecraft // Mechanical engineering and computer technologies. 2014. – № 6. URL: https://cyberleninka.ru/article/n/primenenie-metodov-mikrodugovogo-oksidirovaniya-pri-sozdanii-konstruktivnyh-elementov-kosmicheskih-apparatov. (In Russian).

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