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Rolling and Heat treatment
Название Modernization of a rolling table before gas cutting machine of bloom CCM
DOI 10.17580/chm.2021.05.05
Автор N. V. Davydov, A. V. Nefedov, N. A. Chichenev
Информация об авторе

National University of Science and Technology “MISiS” – Novotroitsk branch (Novotroitsk, Russia):

N. V. Davydov, Student, e-mail: nfmisis@yandex.ru
A. V. Nefedov, Cand. Ped., Associate Prof., Deputy Director, e-mail: cosnovotr@rambler.ru

 

National University of Science and Technology “MISiS” (Moscow, Russia):

N. A. Chichenev, Dr. Eng., Prof., Technological Equipment Engineering Dept., e-mail: chich38@mail.ru

Реферат

The results of the analysis of the design of the intermediate rolling table in front of the gas cutting machine of the four-strand continuous casting machine (CCM-1) of the electric steelmaking shop of JSC Ural Steel are presented. It is shown that as a result of exposure to high temperatures (due to the unsuccessful location of the gear motor near the high temperature zone), the operability of the gear coupling of the gear motor is often disrupted. To improve the performance of the intermediate rolling table CCM-1, it is proposed to modernise it by installing a pull-down device on each strand directly in front of the gas cutting machine, the working element of which is a drive roller located above the rolling table. Rotation of the roller is carried out from an individual electric drive, and its pressing to the workpiece – by means of a hydraulic drive through a system of levers. This makes it possible to perform all 28 rollers of the rolling table non-drive ones, without changing their location. As a result of the modernization of the intermediate rolling table CML-1 in front of the gas cutting machine, it was possible to simplify its design and reduce the complexity of maintenance and repair by 64 hours per year. Replacing 28 drive rollers with non-drive rollers increases the reliability of their operation, allows you to increase the repair period of operation and thereby reduce the cost of operating costs. In addition, reducing the number of electric motors from 28 to 4 provides significant energy savings. Calculations show that the implementation of design solutions leads to a reduction in the cost of one ton of steel by 0.05 %, an increase in product profitability by 0.19 % and an increase in labor productivity by 0.41 %. Additional capital expenditures of about 1 million rubles are recouped in less than 3 months.

Ключевые слова Sink drawing, austenitic steel, stresses, plastic deformation, finite element method, n martensite deformation
Библиографический список

1. Mayrhofer А., Hartl F., Rohrhofer А., Stohl R. Control of steelmaking equipment parameters. Chernye Metally. 2018. No. 9. pp. 28–33.
2. Bardovskiy A. D., Gorbatyuk S. M., Keropyan A. M., Bibikov P. Ya. Assessing parameters of the accelerator disk of a centrifugal mill taking into account features of particle motion on the disk surface. Journal of Friction and Wear. 2018. Vol. 39, Iss. 4. pp. 326–329.

3. Savelyev А. N., Severyanov S. S. Estimation of operability of units of the technological line “Continuous casting machine”. Izvestiya vuzov. Chernaya Metallurgiya. 2019. No. 12. pp 972–978.
4. Eronko S. P., Gorbatyuk S. М., Oshovskaya Е. V., Starodubtsev B. I. Development of an automatic system of gas-dynamic cut-off of final slag for the converter with the rotating shell. Izvestiya vuzov. Chernaya Metallurgiya. 2017. No. 11. pp. 863–869.
5. Arabadzhi Ya. N., Olennikov А. S., Kurchukov А. М., Likhacheva Т. А. Thickening equipment modernization with supaflo process (Outotec) at Talnakh Concentrator. Tsvetnye Metally. 2018. No. 6. pp. 38–43.
6. Zhareken А. Zh., Dzhumaliev А. S. Burning furnace cooling circle refitting. Gornyi Zhurnal. 2018. No. 5. pp. 34–35.
7. Kalinenko Yu. N., Kamenev А. А., Mitkin А. V., Kirienkov А. N. Reengineering of roasting machines at pelletizing factory. Gornyi Zhurnal. 2017. No. 5. pp. 67–69.
8. Gorbatyuk S. М., Morozova I. G., Naumova М. G. Development of a working model for the reindustrialization production process of heat treatment of stamped steels. Izvestiya vuzov. Chernaya Metallurgiya. 2017. Vol. 60, No. 5. pp. 410–415.
9. Gorbatyuk S. М., Zarapin А. Yu., Chichenev N. А. Modernization of a vibrating screen of the Katoka mining company (Angola). Gornyi informatsionno-analiticheskiy byulleten. 2018. No. 1. pp. 143–149.
10. Nefedov А. V., Svichkar V. V., Chichineva О. N. Reengineering of a skip for loading the CJSC RIFAR foundry department furnace. Stal. 2020. No. 7. pp. 50–53.
11. Koryak А. V., Chichenev N. А. Reengineering of a running cart with a arc steelmaking furnace container. Stal. 2020. No. 1. pp. 36–39.
12. Chichenev N. A. Reengineering of the slab-centering unit of a roughing mill stand. Metallurgist. 2018. Vol. 62, No. 7–8. pp. 701–706.
13. Efremov D. B., Stepanov V. М., Chichineva О. N. Modernization of the mechanism of fast wipping of rolls of a rolling stand of 2800 DUO f mill of JSC Uralskaya Stal. Stal. 2020. No. 8. pp. 44–47.
14. Masini R., Lainati A. Latest bar mill technology. Millenium Steel. 2005. pp. 216–227.
15. Thome R., Harste K. Principles of billet soft-reduction and consequences for continuous casting. ISIJ International. 2006. Vol. 46, No. 12. pp. 1839–1844.
16. Rumyantsev M. I. Some approaches to improve the resource efficiency of production of flat rolled steel. CIS Iron and Steel Review. 2016. Vol. 12. pp. 32–36.
17. Official site Ural Steel - Metalloinvest [Electronic resource] Available at: www.metalloinvest.com/business/steel/ural-steel/ (accessed: 26.10.2020).
18. Chichenev N. A. Import-replacing re-engineering of the drive of the rollers in the intermediate roller table of a continuous bloom caster. Metallurgist. 2015. Vol. 58, No. 9–10. pp. 892–895.
19. Andrienko L. А., Baykov B. А., Zakharov М. N., Polyakov S. А., Ryakhovskiy О. А., Tibanov V. P., Fomin М. V. Machine elements: tutorial. Moscow: Izdatelstvo MGTU imeni N. E. Baumana, 2014. 469 p.
20. Lukashkin N. D., Kokhan L. S., Yakushev А. М. Design and calculation of machines and units of metallurgical plants: tutorial. Moscow: Akademkniga, 2003. 456 p.
21. Tselikov А. I., Polukhin P. I., Grebenik V. М., Ivanchenko F. К., Tylkin А. М. et. al. Machines and units of metallurgical plants: in 3 vol. Machines and units of steel-melting shops: tutorial for universities. Moscow: Metallurgiya, 1988. Vol. 2. 432 p.
22. Planetary-connecting rod gear motors. Types. [Electronic resource] Available at: https://tehnorostmash.ru/images/r1-66_mpsh.pdf (accessed: 09.07.2020).
23. Nazemtsev А. S., Rybalchenko D. Е. Pneumatic and hydraulic drives and systems. In 2 parts Part 2. Hydraulic drives and systems: tutorial. Moscow: FORUM, 2007. 304 p.
24. Parr A. Hydraulics and pneumatics: 3rd edition: a technician’s and engineer’s guide. Butterworth-Heinemann. 2011. p. 248.
25. Merko М. А., Kolotov А. V., Mesnyankin М. V., Mityaev А. Е., Sharonov А. А., Rabetskaya О. I. Theory of mechanisms and machines. Lever mechanisms: practicum. Krasnoyarsk: Sibirskiy federalny universitet, 2016. 240 p.
26. Timofeev G. А. Theory of mechanisms and machines: tutorial and practicum. Moscow: Izdatelstvo Yurayt, 2019. 368 p.
27. Merkle D., Schrader B., Thomes M. Hydraulics. Basic Level: textbook. [Electronic resource]. Available at: https://pws.yazd.ac.ir/abootorabi/Festo-Didactic-Hydraulic.pdf (accessed: 26.10.2020).
28. Hydraulic cylinders of the GC brand. SUET company [Electronic resource] Available at: http://www.suet-hydravlica.ru/catalogue/hydraulic_cylinder/brand_GC.htm (accessed: 26.10.2020).

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