Журналы →  Chernye Metally →  2020 →  №11 →  Назад

Metal science and metallography
Название Phase transformations in iron-carbon alloys doped with rare earth and transition metals
DOI 10.17580/chm.2020.11.03
Автор A. A. Zhumaev, Yu. N. Mansurov, D. D. Mamatkulov, K. S. Abdullaev
Информация об авторе

Navoi branch of the Academy of Sciences of Uzbekistan (Navoi, Uzbekistan):

A. A. Zhumaev, Postgraduate Student, E-mail: ahmadjon_jumayev@mail.ru


Institute of General and Inorganic Chemistry of the Academy of Sciences of Uzbekistan (Tashkent, Uzbekistan):
Yu. N. Mansurov, Dr. Eng., Director, Prof. of the Tashkent State Transport University, E-mail: yulbarsmans@gmail.com


Samarkand State Institute of Architecture and Civil Engineering (Samarkand, Uzbekistan):
D. D. Mamatkulov, Dr. Eng., Prof.

 

Navoi Machine-Building Plant (Navoi, Uzbekistan):
K. S. Abdullaev, Chief Engineer

Реферат

Iron-based alloys began to be used so long ago that today they are classified as classical materials, since these alloys have been studied in depth. The production of various products from steel and cast iron naturally takes the first place in terms of volume, since they have a valuable set of properties: a wide range of plasticity and strength, unique technological properties, which makes it possible to apply all technological operations to them - from simple casting into earth to complex pressure treatment processes. This combination of properties provides, first of all, the composition of iron-based alloys with the main alloying element – carbon. The serious disadvantage of ferrous alloys is their low level of corrosion properties. To eliminate this drawback, both steel and cast iron are alloyed with such metals as chromium, nickel, cobalt, etc. Naturally, this leads to an increase in the mass of finished products and structures. Therefore, the search for alloying elements to improve and optimize the composition of ferrous alloys is relevant today. On the other hand, the industry of Uzbekistan produces a sufficient amount of transition, rare earth metals. Thus, the task is to get added value from the production and processing of these non-ferrous metallurgy products. The analysis of the known literature data on this topic shows that research has been carried out on the use of various transition and rare earth metals for alloying ferrous alloys. However, the available scientific results do not allow to speak about systemic knowledge about the use of rare earth and/or transition metals as effective additives for steels and cast irons. The authors studied phase equilibria, determined the compositions of the phases and the reactions occurring in the systems, constructed phase diagrams, their isothermal sections, determined the structure of iron-based alloys with additions of rare-earth and transition metals with all structural components. The prospect of using the products of nonferrous metallurgy of Uzbekistan for the production of high-quality steels and cast irons is shown.

Ключевые слова Iron, carbon, steels, cast irons, alloying, rare earth elements, transition metals, phase equilibria, structure
Библиографический список

1. Overview of the iron and steel market, Deloitte 2019 [Electronic resource] Available at: https://www2.deloitte.com/content/dam/Deloitte/ru/Documents/research-center/metals-1h-2019.pdf (accessed: 02.10.2020).
2. Sankaran Krishnan K., Mishra Rajiv S. Metallurgy and Design of Alloys with Hierarchical Microstructures. Elsevier. 506 р.
3. Ahmad J. K. Melting of a new carbon – free waxed sponge iron in Electric Arc Furnace (EAF) for steelmaking. International Journal of Materials Science and Applications. 2015. Vol. 4. No. 1–2. pp. 1–6.
4. Mikhaylov V. A. World rare earth ores: Geology, resources, economics: monograph.Kiev: Izdatelsko-poligraficheskiy tsentr “Kievskiy universitet”, 2010. 223 p.
5. Cheylyakh A. P. Economically alloyed metastable alloys and hardening technologies. Kharkov: NNTs KhFTI, 2003. 212 p.
6. Tanaka Y., Takaki S., Tsuchiyama T., Uemori R. Effect of grain size on the yield stress of cold worked iron. ISIJ International. 2018. Vol. 58, Iss. 10. pp. 1927–1933.
7. Volchok I. P., Netrebko V. V. The influence of manganese on the processes of structure formation of wear-resistant high-chromium cast irons. Stroitelstvo, materialovedenie, mashinostroenie. 2012. Iss. 64. pp. 301–304.
8. Kadyrkhodzhaev A. P., Kupchenko V. P. Waste from uranium mining enterprises in Central Asia. Gorny Vestnik Uzbekistana. 2010. No. 2. pp. 119–124.
9. Ruziev N. R. Features of the formation of the investment program for 2020–2022 for SC “NMMC”. Gorny vestnik Uzbekistana. 2020. No. 1. pp. 116–119.
10. Elkader M. A., Fathy A., Eissa M., Shama S. Effect of Direct Reduced Iron Proportion in Metallic Charge on Technological Parameters of EAF Steelmaking Process. ISIJ International. 2016. Vol. 5, Iss. 2. pp. 2016–2024.
11. Belikov S., Vlchok I., Netrebko V. Manganese influence on chromium distribution in high-chromium cast iron. Archives of Metallurgy and Materials. 2013. Vol. 58, Iss. 3. pp. 895–897.
12. Korostelev A. A. Study of the effect of hot briquetted iron in a metal charge on technological indicators of melting in order to increase the efficiency of steel production in an arc steel-making furnace: Dissertation … of Candidate of Engineering Sciences. Moscow: MISiS, 2019. 184 p.
13. Ilyushkin D. A., Davydov S. V., Boldyrev D. A. Nanomodification of cast iron for glass molds. Vestnik Bryanskogo gosudarstvennogo tekhnicheskogo universiteta. 2017. No. 2. pp. 113–119.
14. Shamelkhanova N. A., Uskenbayeva A. M., Volochko A. T., Korolyov S. P. The Study of the Role of Fullerene Black Additive during the Modification of Ductile Cast Iron. Materials Science Forum. Switzerland. 2017. Vol. 891. pp. 235–241.
15. Kudrya A. V. The role of different-scale structures in ensuring the plasticity and toughness of structurally inhomogeneous steels. Metallovedenie i termicheskaya obrabotka metallov. 2005. No. 5. pp. 18–23.
16. Akhmetova G. E., Smagulov D. U., Vyatkina A. K., Akhmedova T. Sh., Kudrya A. V. et. al. Computerized procedures for quantitative image processing of pipe steel structures. Stal. 2019. No. 1. pp. 55–59.
17. Shtremel M. A., Kudrya A. V. Steel quality: in the book. Steel at the turn of the century. Edited by Yu. S. Karabasov. Moscow: MISiS, 2001. pp. 445–543.
18. He Y., Han Y., Stamenov P., Kundys B., Coey J. M. D. et al. Investigating non-Joulian magnetostriction. Nature. 2018. Vol. 556. E5–E7.
19. Taheri P., Barua R., Hsu J., Zamanpour M., Chen Y. Structure, magnetism, and magnetostrictive properties of mechanically alloyed Fe81Ga19. Journal of Alloys Compounds. 2016. Vol. 661. pp. 306–311.
20. Yao Z., Tian X., Jiang L. et al. Influences of rare earth element Cedoping and meltspinning on microstructure and magnetostriction of Fe83Ga17 alloy. Journal of Alloys and Compounds. 2015. Vol. 637. pp. 431–435.
21. Kudrya A. V. Construction materials and quality management methods. Promising materials. Vol. 2. Edited by D. L. Merson. Moscow: TGU MISiS, 2006. pp. 281–304.
22. Cahn R. W., Hansen P. M. Physical Metallurgy. Vol. 2. Translated from English. Moscow: Metallurgiya, 1987. 624 p.
23. Kudrya A. V., Sokolovskaya E. A., Akhmedova T. Sh., Perezhogin V. Yu. Information content of hard alloy structures morphology for the forecast of facings quality. Tsvetnye Metally. 2017. No. 12. pp. 78–83.

Полный текст статьи Phase transformations in iron-carbon alloys doped with rare earth and transition metals
Назад