INVESTIGATION OF THE EFFECTIVENESS OF ANTI-CORROSION COATINGS AND INHIBITORS BASED ON ELECTROCHEMICAL METHODS

Authors

  • Yigitali Isroilov

DOI:

https://doi.org/10.47390/ts-v3i12y2025N10

Keywords:

corrosion, metal, protective coating, inhibitor, electrochemical monitoring, nanoparticle, pitting corrosion.

Abstract

This article is devoted to the study of the corrosion process of metals in various aggressive environments and the identification of effective protection strategies. The problem is associated with the reduction of the service life of metal structures and technological equipment due to corrosion, increased operating costs and reduced industrial safety.

As part of the research methodology, laboratory experiments, electrochemical monitoring, SEM-EDX analysis of the metal surface, real operational observations and mathematical modeling methods were used. The data were analyzed using statistical methods and the mechanisms of the corrosion process, the effectiveness of coatings and inhibitors were assessed.

The main findings showed that polymer coatings enriched with nanoparticles, organic inhibitors and combined electrochemical protection systems effectively protect the metal. The corrosion rate significantly depends on the pH level, ionic composition and temperature of the environment. The results of electrochemical monitoring and structural analysis clearly demonstrated the stability and effectiveness of the protection strategies. The general conclusion is that the results of the study serve as a scientific basis for extending the service life of metal structures, reducing economic losses and improving industrial safety. At the same time, it is recommended to use modern protective technologies and monitor them in real conditions.

References

1. Россина, Н. Г., Попов, Н. А., Жилякова, М. А., Корелин, А. В. — Коррозия и защита металлов: учебно-методическое пособие (2 части). Екатеринбург: Изд-во Уральского университета, 2019 [1], [6].

2. Шлугер, М. А., Ажогин, Ф. Ф., Ефимов, Е. А. — Коррозия и защита металлов. Москва: Металлургия, 1981[2], [7]. (https://dwg.ru/lib/3991)

3. Гуров, А. А., Слитиков, П. В. — Коррозия металлов. Защита металлов от коррозии.

4. (https://www.litres.ru/book/aleksandr-gurov-7467248/korroziya-metallov-zaschita-metallov-ot-korrozii-69375319/)

5. Пустов, Ю. — Коррозия и защита металлов в водных средах.

6. (https://books.academic.ru/book.nsf/87355456/Коррозия)

7. Puzikova, D., Khussurova, G., Leontyeva, X. va boshqalar. Review of organic corrosion inhibitors: application with respect to the main functional group. Journal of Saudi Chemical Society. 2025 [3], [8]. Link: https://doi.org/10.1007/s44442-025-00021-1

8. Xintong Yue, Meiling Zhang, Ting Wang, Xianmin Su. A Review Paper on the Research Status and Development Trend of Corrosion Inhibitors. International Journal of Energy [5], [10]. Link: https://drpress.org/ojs/index.php/ije/article/view/15126

9. M. Lavanya, Avryl Anna Machado. Surfactants as biodegradable sustainable inhibitors for corrosion control in diverse media and conditions: A comprehensive review [11]. Science of The Total Environment. Link: https://doi.org/10.1016/j.scitotenv.2023.168407

10. Sultanmurat Q. Aytmuratov, Gulistan R. Tajimova. Nеft va gaz sanoati jihozlarini korroziyadan himoya qilish. Science and Education [4],[9]. Link: https://openscience.uz/index.php/sciedu/article/view/6025

11. V. N. Chuvil’diyev, V. I. Kopylov, A. V. Nokhrin va boshqalar. Effect of severe plastic deformation realized by rotary swaging on the mechanical properties and corrosion resistance of near-a-titanium alloy Ti-2.5Al-2.6Zr. Link: https://arxiv.org/abs/2401.17672

12. Collazo, B. Díaz, R. Figueroa, X. R. Nóvoa, C. Pérez. Corrosion resistance of a water-borne resin doped with graphene derivatives applied on galvanized steel [12]. Link: https://arxiv.org/abs/2401.15410

Downloads

Submitted

2025-12-26

Published

2025-12-27

How to Cite

Isroilov, Y. (2025). INVESTIGATION OF THE EFFECTIVENESS OF ANTI-CORROSION COATINGS AND INHIBITORS BASED ON ELECTROCHEMICAL METHODS. Techscience Uz - Topical Issues of Technical Sciences, 3(12), 94–102. https://doi.org/10.47390/ts-v3i12y2025N10

Similar Articles

1 2 3 > >> 

You may also start an advanced similarity search for this article.