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Proceedings of the National Academy of Sciences of Belarus, Chemical Series

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CORROSION INHIBITION OF Zn-PLATED STEEL BY SODIUM VANADATE

Abstract

The results of investigation of corrosion inhibition of zinc-plated coatings in neutral chloride-containing corrosive medium by aqueous sodium vanadate solution are described. Investigations of corrosion inhibition of zinc-plated coatings on steel were performed by gravimetric and electrochemical method. The corrosive medium was neutral 3% sodium chloride solution, with a sodium vanadate concentration varied from 0.00005 M to 0.0003 M. Mass indices of corrosion, current density and corrosion potential of galvanized steel were determined depending on inhibitor concentration. Electrochemical studies show that the introduction of sodium vanadate in amounts of 0.00005–0.0003 M into the corrosive medium (3% sodium chloride solution) slows down the process of zinc corrosion. The corrosion process slows down by 3.3 times at an inhibitor concentration of 0.00005 M and by 20 times at an inhibitor concentration of 0.0002 M, respectively. An increase in the concentration of sodium vanadate to more than 0.0002 M is inappropriate, since an increase in the corrosion current occurs. The optimal corrosion inhibitor concentration for zinc-plated steel in 3% NaCl solution for Na3VO4 lies in the range of 0.0001–0.0002 М. The protection effect of the inhibitor found by gravimetric and electrochemical methods equals to 40–76% and 93–95%, respectively.

 

 

About the Authors

M. M. Borzyh
Belarusian State Technological University
Belarus

Graduate



N. E. Akulich
Belarusian State Technological University
Belarus

M. Sc. (Engineering), Ph. D. student



V. G. Matys
Belarusian State Technological University
Belarus

Ph. D. (Chemistry), Associate Professor



N. P. Ivanova
Belarusian State Technological University
Belarus

Ph. D. (Chemistry), Associate Professor



I. N. Kandidatova
Belarusian State Technological University
Belarus

Ph. D. (Chemistry), Assistant Lecturer



V. A. Ashuiko
Belarusian State Technological University
Belarus

Ph. D. (Chemistry), Associate Professor



References

1. Hurley B. L., Ralston K. D., Buchheita R. G., “Corrosion Inhibition of Zinc by Aqueous Vanadate Species”, Journal of The Electrochemical Society, 2014, vol. 161, no. 10, pp. C471–C475.

2. Li Ning, “Corrosion protection properties of vanadium films formed on zinc surfaces”, Rare Metals, 2011, vol. 30, no. 2, p. 146.

3. Zou Zhongli, Li Ning, Li Deyu, Liu Haiping, Mu Songlin, “A vanadium-based conversion coating as chromate replacement for electrogalvanized steel substrates”, Journal of Alloys and Compounds, 2011, vol. 509, pp. 503–507.

4. “The process of weak acid zinc plating”, 2014, available at: http://chimsn.ru/bleskoobrazovateli-dlya-galvanotehniki/ process-slabokislogo-cinkovaniya/, (Accessed 25.09.2016).

5. Limited Liability Company “Protector”, Institute of Physical Chemistry and Electrochemistry im. Frumkin Russian Academy of Sciences, GOST R 9.907-2007. Edinaia sistema zashchity ot korrozii i stareniia. Metally, splavy, pokrytiia metallicheskie. Metody udaleniia produktov korrozii posle korrozionnykh ispytanii [GOST R 9.907-2007. Unified system of protection against corrosion and aging. Metals, alloys, metal coatings. Methods for removing corrosion products after corrosion testing], Standartinform, Moscow, RU, 2007.


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ISSN 1561-8331 (Print)
ISSN 2524-2342 (Online)