Journals →  Chernye Metally →  2018 →  #5 →  Back

Coating and surface treatment
ArticleName Influence of phosphate borate compounds on anti-corrosion stability of carbon steel in neutral water environment
ArticleAuthor I. E. Illarionov, Sh. V. Sadetdinov, I. A. Strelnikov, V. A. Gartfelder
ArticleAuthorData

Chuvash State University (Cheboksary, Russia):

I. E. Illarionov, Dr. Eng., Prof, Head of the Chair “Metal science and metallurgical processes”, e-mail: tmilp@rambler.ru
Sh. V. Sadetdinov, Dr. Chem., Prof., the Chair “Metal science and metallurgical processes”
I. A. Strelnikov, Cand. Eng., Assocoate Prof., the Chair “Metal science and metallurgical processes”
V. A. Gartfelder, Cand. Eng., Prof., Dean of the Machine-building faculty

Abstract

Methods of physicochemical analysis revealed formation of new phosphate borate compounds in the systems of sodium penta-, tetra-, metaborate-trisodium phosphate-water at 25 °C. It has been found that sodium borates react with trisodium phosphate to form phosphate borates of the following compositions: 3NaB5O8 · Na3PO4 · 4H2O, Na2B4O7 · Na3PO4 · 5H2O and 2NaBO2 · Na3PO4 · 4H2O. The effect of phosphate borate compounds on the corrosion resistance of steel 10 in a 3% solution of sodium chloride was studied by gravimetric, corrosion-electrochemical and corrosion-fatigue tests. It has been shown that phosphate borate compounds are effective anticorrosive additives and they have a greater inhibitory ability than sodium pentaborate, sodium tetraborate, sodium metaborate and trisodium phosphate taken separately. Electrochemical studies have shown that phosphate borate compounds are predominantly anode action inhibitors. Addition of 5 g/l phosphate dimaborate to a 3% NaCl solution significantly increases the cyclic strength of the steel. Increase in the anti-corrosion resistance of carbon steel in an aggressive environment in the presence of phosphate borate compounds of steel 10 is due to formation of a dense protective ferrohydroxophosphate-borate film on the metal surface.

keywords Sodium pentaborate, sodium tetraborate, sodium metaborate, trisodium phosphate, phosphate borate compounds, steel 10, sodium chloride solution, gravimetric tests, protection, corrosion-electrochemical studies, anodic inhibitors, corrosion fatigue tests, cyclic strength
References

1. Polovnyak V. K., Timofeeva I. V., Bystrova O. N. et al. Protective action of nitrogen- and phosphor-containing inhibitors of hydrogen sulfide corrosion of steel and their industrial tests under the conditions of oil output and refining. Praktika protivokorrozionnoy zashchity. 2006. No. 3. pp. 44–48.
2. Kozlov D. Yu. Anticorrosion protection. Ekaterinburg: ID Origami, 2013. 440 p.
3. Rakhmankulov D. L., Bugay D. E., Gabitov A. I., Gonik A. A., Akhiyarov R. Zh., Kalimullin А. А. Corrosion inhibitors. Vol. 4. Theory and practice of anticorrosion protection of oil-field equipment and pipelines. Moscow: Inter, 2007. 300 p.
4. Gabitov A. I. Results and prospects in the corrosion control theory and practice. Ufa: Reaktiv, 1998. 124 p.
5. Rakhmankulov D. L., Zenzov V. N. et al. Corrosion inhibitors. Vol. 3. Fundamentals for production technology of domestic corrosion inhibitors. Moscow: Inter, 2005. 346 p.
6. Yurkinsky V. P., Baturova E. G., Firsova E. G. Corrosion resistance of stainless steels in NaOH melt. Chernye metally, 2014. No. 4. pp. 73–77.
7. Zharsky M. I., Ivanova N. P., Kuis D. V., Svedunovich N. A. Corrosion and protection of metallic structures and equipment. Minsk: Vysheyshaya shkola, 2012. 304 p.
8. Neverov A. S., Rodchenko D. A., Tsyrlin M. I. Corrosion and metal protection. Corrosion and metal protection. Minsk: Vysheyshaya shkola, 2013. 224 p.
9. Semenova I. V., Florianovich G. М., Khoroshilov A. V. Corrosion and protection against corrosion. Edited by: Semenova I. V. Moscow: Fizmatlit, 2002. 336 p.
10. Ashassi-Sorkhabi Н., Shaabani B., Seifzadeh D. Corrosion inhibition of mild steel by some schiff base compounds in hydrochloric acid. Applied Surface Science. 2005. No. 239. pp. 154–164.
11. Jiang X., Zheng Y. G., Ke W. Effect of flow velocity and entrained sand on inhibition performances of two inhibitors for CO2 corrosion of N80 steel in 3% NaCl solution. Corrosion Science. 2005. No. 47. pp. 2636–2658.
12. Chepkasova O. А., Selezneva А. А., Sadilov А. I., Khmelev S. V. Metal corrosion. Molodoy ucheny. 2015. No. 23. pp. 260–261.
13. Remenzov A. N., Fadeev I. V. Anticorrosion polymeric compositions on the base of D-10TM oligoesterurethanedimethacrylate. Avtotransportnoe predpriyatie. 2009. No.12. pp. 48–51.
14. Zhaksybaeva A. G., Khamitova A. S. Corrosion inhibitors for protection of metallic structures. Aktualnye problem gumanitarnykh i estestvennyh nauk. 2014. No. 1. pp. 23–26.
15. Kuznetsov Yu. I. Progress in science about corrosion inhibitors. Korroziya: metally i zashchita. 2015. No. 3. pp. 12–14.
16. Eshmamatova N., Tillaev R. S., Akbarov Kh. I., Kholikov A Zh. Corrosion inhibition of carbon steel in neutral environment. Current issues of biology and chemistry. Materials of a scientific and practical conference of young scientists. Tashkent: 2008. pp. 286–288.
17. Skvortsov V. G., Sadetdinov Sh. V., Molodkin А. К., Mikhaylov V. I., Pavlov G. P., Nikiforov N. G. Interaction of boric acid with 1-oxy ethane-1,1-diphosphonew acid. Zhurnal neorganicheskoy khimii. 1992. Vol. 36. No. 4. pp. 1083–1086.
18. Fadeev I, V., Novoselov А. М., Sadetdinov Sh. V. Theoretical fundamentals for development of novel corrosion inhibitors for a motor transportation complex. Vestnik MADI. 2014. Issue 4 (39). pp. 17–21.
19. Ershov М. А., Kamaev Е. V., Skvortsov V. G. Thiosemicarbazide-hydroxyethyledene-bisphosphonic complex and its inhibitory properties. Butlerovskie soobshcheniya. 2013. Vol. 35. No. 9. pp. 14–20.
20. Kholikov A. Zh., Akbarov Kh. I., Tillaev R. S. Polyphosphate inhibition of a steel corrosion electrochemical process. Uzbeksky khimichesky zhurnal. 2008. No. 5. pp. 31–35.
21. Illarionov I. E., Polovnyak V. K., Fadeev I. V., Sadetdinov Sh. V. Development of hardening medium on the base of phase equilibrium in the N2H4СO – NH2С2H4OH – H2O system at 25 °С. Nauchno-technichesky vestnik Povolzhya. 2016. No. 1. pp. 7–12.
22. Fadeev I, V., Illarionov I. E., Sadetdinov Sh. V. Aminoborate solution to obtain magnetitic coatings on steels. Vestnik MADI. 2016. No. 1 (44). pp. 68–74.
23. Levashova V. I., Yangirova I. V., Kazakova I. V. Corrosion inhibitors on the base of organoboron compounds: review. Sovremennye problemy nauki I obrazovaniya. 2014. No. 6. Available at: http://scienceeducation.ru/pdf/2014/6/135.pdf
24. Illarionov I. E., Fadeev I. V., Sadetdinov Sh. V. Solution to obtain magnetitic coatings on steel. Patent RF, No. 2614504. Applied: 31.12.2015. Published: 28.03.2017. Bulletin No. 10.
25. Sadetdinov Sh. V., Nikitin A. I., Fedorov V. E. Coolant-cutting fluid. Patent RF No. 23996052. Applied: 06.03.2008; Published: 20.09.2010, Bulletin No. 24.

Language of full-text russian
Full content Buy
Back