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Rolling and Metal Science
Название Prospects for the production of weather-resistant rolled steel with increased cold resistance
DOI 10.17580/chm.2022.03.11
Автор A. S. Kuznetsova, D. Yu. Alekseev, Yu. B. Kukhta, D. G. Emaleeva
Информация об авторе

Nosov Magnitogorsk State Technical University, Magnitogorsk, Russia:

A. S. Kuznetsova, Junior Researcher, Dept. of Metal Processing Technology, e-mail: a.kuznetsova@magtu.ru
D. Yu. Alekseev, Engineer, Dept. of Metal Processing Technology
Yu. B. Kukhta, Associate Professor, Dept. of Computer Science and Programming
D. G. Emaleeva, Cand. Eng., Researcher, Dept. of Metal Processing Technology

Реферат

The main advantages and areas of application of weather-resistant steels are considered. The main features of the chemical composition and oxidation mechanism of the materials under consideration are noted. As a result of comparing the main performance characteristics of weather-resistant steels produced by leading foreign and Russian manufacturers, the relevance and prospects of organizing high-tech production of weather-resistant rolled steel with increased cold resistance are substantiated. Special attention is paid to a comprehensive project for the creation of high-tech production, implemented by PJSC Magnitogorsk Iron and Steel Works together with scientists from FSBEI HE Nosov Magnitogorsk State Technical University. One of the promising materials being developed within the framework of the project is weather-resistant rolled steel, which has a high level of strength, ductility and cold resistance. The proposed combination of properties will ensure high efficiency of the functioning of strategic facilities of the oil and gas and machine-building complexes of Russia, as well as transport and bridge building, subjected to the simultaneous effects of low temperatures and high mechanical loads. At the same time, high resistance to atmospheric corrosion significantly increases the service life of the material, reduces operating costs and expands the scope of metal products, including in climatically cold conditions.
P. P. Poletskov, S. V. Denisov, P. A. Stekanov, E. V. Braichev, and P. G. Adishchev, a post-graduate student of the MTa-21-2 group, took part in the work.
The work is carried out at the Nosov Magnitogorsk State Technical University with the financial support of the Ministry of Education and Science of Russia as part of the implementation of a comprehensive project to create the high-tech production (agreement with the Ministry of Education and Science of Russia No. 075-11-2021-063 dated 06/25/2021).

Ключевые слова Corrosion, weather-resistant steel, rolled metal, chemical composition, strength, impact strength, cold resistance
Библиографический список

1. The POSCO Quality. HOT Rolled Steel. Available at: http://product.posco.com/homepage/product/eng/jsp/process/s91p2000110h.jsp (accessed: 12.09.2021).
2. Morcillo M., Díaz I., Chico B., Cano H., de la Fuente D. Weathering steels: from empirical development to scientific design. A review. Corrosion Science. 2014. Vol. 83. pp. 6–31.
3. Křivý V., Urban V., Fabián L. Experimental investigation of corrosion processes on weathering steel structures. Key Engineering Materials. 2013. Vol. 577–578. pp. 397–400.
4. Jian P. N., Yu J. L., Li X. Zh. et al. The Research Situation and Development Trend of Weathering-Steel. Applied Mechanics and Materials. 2015. Vol. 713–715. pp. 2962–2965.
5. Morcillo M., Díaz I., Cano H., Chico B., de la Fuente D. Atmospheric corrosion of weathering steels. Overview for engineers. Part II: testing, inspection, main finance. Construction and Building Materials. 2019. Vol. 222. pp. 750–765.
6. Guo J., Shang C., Yang S., Guo H., Wang X., He X. Weather resistance of low carbon high performance bridge steel. Materials and Design. 2009. Vol. 30, Iss. 1. pp. 129–134.
7. Morel J., Creus J., Gaillet L., Chatel V., Astic J. Evaluation of the durability of weathering steel – effects of environmentals changes on corrosion behavior of low alloyed steels. Ce/papers. 2021. Vol. 4, Iss. 2–4. pp. 1644–1649.
8. Liu R., Chen X. P., Shi Q. N. Effect of Ni on corrosion resistance of weathering steels in wet/dry environments. Advanced Materials Research. 2014. Vol. 989–994. pp. 420–424.
9. Bupesh Raja V. K., Palanikumar K., Rohith Renish R., Ganesh Babu A. N., Varma J., Gopal P. Corrosion resistance of corten steel – a review. Materials Today: Proceedings. 2021. Vol. 46. pp. 3572–3577.
10. Yang X., Yang Y., Sun M., Jia J., Cheng X., Pei Z. et al. A new understanding of the effect of Cr on the corrosion resistance evolution of weathering steel based on big data technology. Journal of Materials Science and Technology. 2022. Vol. 104. pp. 67–80.
11. Barat B. R., Palomar T., García B., de la Fuente D. et al. Composition and protective properties of weathering steel artificial patinas for the conservation of contemporary outdoor sculpture. 9th interim meeting of the ICOM-CC Metals Working Group. Metal 2016. 2016. 6 p.
12. ASTM A588-2015. High-strength low-alloy structural steel with atmospheric corrosion resistance. Introduced: 01.03.2015. California: American National Standards Institute, 2015.
13. ASTM A606-2015. Steel, sheet and strip, high-strength, low-alloy, hot-rolled and cold-rolled, with improved atmospheric corrosion resistance. Introduced: 01.01.2015. California: American National Standards Institute, 2015.
14. ASTM A871-2014. High-strength low-alloy structural steel with atmospheric corrosion resistance. Introduced: 01.05.2014. California: American National Standards Institute, 2014.
15. EN 10025-5-2004. Hot-rolled products of structural steel. Part 5. Technical delivery conditions for structural steels with improved atmospheric corrosion resistance. Introduced: 17.11.2004.
16. Weathering steel market size, share & trends analysis report by application (building & construction, transportation, art & architecture), by region, and segment forecasts, 2019 – 2025. Available at: https://www.grandviewresearch.com/industry-analysis/weathering-steelmarket (accessed: 09.11.2021).
17. Poletskov P. P., et. al. Method for production of coils of hot-rolled strip from cryogenic structural steel. Patent RF, No. 2720286. Applied: 26.06.2019. Published: 28.04.2020.
18. Poletskov P. P., et. al. Method for production of cryogenic structural steel sheet. Patent RF, No. 2703008. Applied: 26.06.2019. Published: 15.10.2019.
19. Poletskov P. P., et. al. Method of producing sheet rolled products from low-alloy pipe steel. Patent RF, No. 2696186. Applied: 05.10.2017. Published: 31.07.2019.
20. Poletskov P. P., et. al. Method for production of plate steel from low alloyed steel for pipes. Patent RF, No. 2702171. Applied: 07.06.2018. Published: 04.10.2019.
21. Poletskov P. P., et. al. Flat steel from construction cold-rolled steel manufacturing method (options). Patent RF, No. 2677445. Applied: 05.10.2017. Published: 16.01.2019.
22. Poletskov P. P., et. al. Method of producing high-strength cold-resistant sheet from low-alloy steel. Patent RF, No. 2674797. Applied: 07.06.2018. Published: 13.12.2018.

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