Журналы →  Chernye Metally →  2021 →  №5 →  Назад

Rolling and Heat treatment
Название Automated system for analysis and calculation of cold rolling strip parameters. Message 1
DOI 10.17580/chm.2021.05.04
Автор A. I. Bozhkov, D. A. Kovalev, S. S. Degtev, R. I. Shulgin
Информация об авторе

Lipetsk State Technical University (Lipetsk, Russia):
A. I. Bozhkov, Cand. Eng., Prof., Metal Forming Dept., e-mail: bozhkov_51@mail.ru


Novolipetsk Steel – NLMK (Lipetsk, Russia):

D. A. Kovalev, Cand. Eng., Head of Technology Development Dept., e-mail: kovalev_da@nlmk.com
S. S. Degtev, Cand. Eng., Head of Dept. of Technical Development of Sales, e-mail: degtev_ss@nlmk.com
R. I. Shulgin, Graduate Student, Specialist of the Regional Sales Directorate, e-mail: shulgin_ri@nlmk.com

Реферат

The article presents the results of experimental tests of the Automated system for analysis and calculation of cold rolling strip parameters (ASACCP) on a 1400 multi-stand mill, which confirmed the efficiency of the system and its suitability for industrial operation. All types of tests of the automated system (further «AS») provided by the standards were carried out. As an example, the article presents the most illustrative results that reflect all the main functions of individual subsystems included in the system. For the study, the standard sizes of strips were selected, which are currently the most produced and are in high demand among end consumers. In the process of researching the selected standard sizes, the following key tasks were set for the AU: stabilization of the process by determining the optimal rolling mode, ensuring a minimum total specific energy consumption at the maximum rolling speed, ensuring the continuity of the strip processing process (minimum breaks, downtime, etc.) and obtaining a given quality rolled strips (no surface defects, conformity of thickness and flatness to the requirements of the regulations). The tasks were solved in several stages in accordance with the functionality of the ASARPP subsystems described in message 1: screening out gross errors, checking the adequacy of the distribution and calculating the optimal ranges of the parameters of the rolling mode – RPAS; search for optimal rolling modes for the selected standard sizes according to two developed calculation methods with their subsequent comparison to check the accuracy of calculations – RMCS; calculation of the settings of the means for regulating the flatness of the strips of the selected standard sizes – SCSFCM; development of solutions for the correction of rolling parameters at non-stationary stages of the rolling process for the selected standard sizes of strips – RPCS. The verification of the adequacy of the results obtained was carried out by determining the relative measurement error, which should not exceed 5%.

Ключевые слова Automated system, analysis, cold rolling, experimental tests, rolling mode, power consumption, rolling parameters, flatness, strip breaks, regulation, stability, optimization
Библиографический список

1. Bozhkov А. I. Et. al. Analysis of formation of production cost of sheet metal shops of a metallurgical enterprise. Proizvodstvo prokata. 2018. No. 8. pp. 26–31.
2. Hameed W. I., Mohamad K. A. Strip thickness control of cold rolling mill with roll. Engineering. 2014. Vol. 6. pp. 27–33.
3. Kawałek A. Teoria i technologia asymetrzcynego procesu walcowania wyrobów płaskich. Seria: Monografie nr. 54. Częstochowa, 2016. 224 р.
4. Roberts V. L. Cold rolling of steel. Moscow: Metallurgiya, 1982. 554 p.
5. 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.
6. Ginzburg V. B. Flat-rolled steel processes: Advanced technologies. CRC Press: 2009. 372 p.
7. Groover M. P. Fundamental of Modern Manufacturing. Materials, Process, and Systems. John Wiley and Sons. Hoboken : 2007. 1025 p.
8. Vasilyev Ya. D. Engineering models and algorithms for calculating cold rolling parameters. Moscow: Metallurgiya, 1995. 368 p.
9. Cramer H. Mathematical methods of statistics. Translation from English. Moscow: Mir, 1975. 648 p.
10. Ayvazyan S. А. et. al. Applied statistics: basics of modeling and primary data processing. Moscow: Finansy i statistika, 1983. 471 p.
11. Bozhkov А. I., Kovalev D. А., Potapov V. S., Shulgin R. I. Method for calculating the modes of cold rolling strips on a multi-stand mill, providing a reduction in the production cost of the rolling mill. Message 1. Izvestiya vuzov: Chernaya metallurgiya. 2019. No. 7. pp. 511–516.
12. Bozhkov А. I., Kovalev D. А., Potapov V. S., Shulgin R. I. Method for calculating the modes of cold rolling strips on a multi-stand mill, providing a reduction in the production cost of the rolling mill. Message 2. Izvestiya vuzov: Chernaya metallurgiya. 2019. No. 9. pp. 667–673.

Language of full-text русский
Полный текст статьи Получить
Назад