Investigation of the Characteristics of MAO Coatings Formed on Ti6Al4V Titanium Alloy in Electrolytes with Graphene Oxide Additives

Author:

Grigoriev Sergey1ORCID,Peretyagin Nikita12,Apelfeld Andrey3ORCID,Smirnov Anton1ORCID,Rybkina Alevtina4ORCID,Kameneva Ekaterina5,Zheltukhin Artem1,Gerasimov Mikhail6,Volosova Marina1,Yanushevich Oleg2,Krikheli Natella2,Peretyagin Pavel12ORCID

Affiliation:

1. Spark Plasma Sintering Research Laboratory, Moscow State University of Technology “STANKIN”, Vadkovsky per.1, Moscow 127055, Russia

2. Scientific Department, A.I. Evdokimov Moscow State University of Medicine and Dentistry, Delegatskaya St., 20, p.1, Moscow 127473, Russia

3. Department 1203, Moscow Aviation Institute National Research University, Volokolamskoe Shosse, 4, Moscow 125993, Russia

4. Laboratory of Corrosion of Metals in Natural Conditions, Institute of Physical Chemistry and Electrochemistry of RAS, Leninsky Prospect, 31, k.4, Moscow 119071, Russia

5. Department of Physical and Quantum Electronics, Moscow Institute of Physics and Technology (National Research University), Institutskiy per., 9, Dolgoprudny, Moscow 141701, Russia

6. Laboratory of Oxidation and Passivation of Metals and Alloys, Institute of Physical Chemistry and Electrochemistry of RAS, Leninsky Prospect, 31, k.4, Moscow 119071, Russia

Abstract

Coatings with a thickness from ~40 to ~50 µm on Ti6Al4V titanium alloy were formed by micro-arc oxidation in a silicate-hypophosphite electrolyte with additions of graphene oxide. Micro-arc oxidation treatment was carried out in the anode–cathode mode (50 Hz) with a ratio of anode to cathode currents of 1:1, a total density of 20 A/dm2, and a treatment duration of 30 min. The effect of the graphene oxide concentration in electrolytes on the thickness, roughness, hardness, surface morphology, structure, composition of micro-arc oxidation coatings, and its electrochemical corrosion behavior in 3.5% NaCl solution was studied. The input of graphene oxide additives into the base silicate hypophosphite electrolyte led to an increase in the hardness of micro-arc oxidation coatings. Electrochemical polarization studies and impedance data showed that the best characteristics in terms of corrosion-protective ability among coatings formed in electrolytes with graphene oxide additives were those formed in the electrolyte with a graphene oxide concentration of 0.1 g·L−l. A further increase in the graphene oxide concentration in the electrolyte did not improve the protective properties of micro-arc oxidation coatings.

Funder

Ministry of Science and Higher Education of the Russian Federation

Publisher

MDPI AG

Subject

Engineering (miscellaneous),Ceramics and Composites

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