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60th anniversary of the Dept. of Metallurgical Equipment of Lipetsk State Technical University
Название An integrated approach to improve the quality of solid fuel in sintering production by improving the DChG 900.700 four-roll crusher
DOI 10.17580/chm.2024.01.05
Автор D. A. Vlasenko, A. P. Zhiltsov, R. S. Melezhik, A. A. Kharitonenko
Информация об авторе

Donbass State Technical University, Alchevsk, Russia

D. A. Vlasenko, Cand. Eng., Associate Prof., Dept. of Metallurgical Technologies, e-mail: VlsnkDA@yandex.ru
R. S. Melezhik, Postgraduate Student, Assistant of the Dept. of Metallurgical Technologies, e-mail: ruslan.melezhik@yandex.ru

 

Lipetsk State Technical University, Lipetsk, Russia

A. P. Zhiltsov, Cand. Eng., Associate Prof., Prof., Dept. of Metallurgical Equipment, e-mail: mo@stu.lipetsk.ru
A. A. Kharitonenko, Cand. Phys.-Math., Associate Prof., Dept. of Metallurgical Equipment, e-mail: aax.in@mail.ru

Реферат

The results of an integrated approach to improving the quality of the fractional composition of crushed solid fuel in agglomeration production, improving and increasing the efficiency of the four-roll crusher DChG 900×700, used for crushing blast furnace coke and dry quenching coke in the agglomeration shop of the Alchevsk Metallurgical Combine of "YUGMK" LLC are presented. To improve the quality of the finished product, increase the efficiency and technical and economic indicators of the crushing machine, a number of measures have been proposed to modernize the design of the upper grooved roll, substantiate the modes of adjusting the degree of pre-tightening of the spring shock-absorbing device and control the operating parameters of feeding the crushed material into the crusher. Based on the results of analytical studies, as well as experimental tests in production conditions, rational design parameters of the surfaced mesh of the corrugated bandages of the upper rolls, the necessary pre-tightening of the springs of the shock-absorbing devices of the lower rolls are proposed. The operating parameters of the material supply to the working space of the roller crushing machine during the crushing of blast furnace coke and dry quenching coke are also justified. As a result of the implementation of the proposed measures, the quality of crushed solid fuel is improved by reducing the content of fine fractions (–0.5 and 0.5–1.0 mm) during the fractional preparation of various types of metallurgical coke and the exclusion of its large fractions (+3.0 mm), which negatively affect the efficiency of the sintering process.

Ключевые слова Agglomeration production, grinding, solid fuel, four-roll crusher, metallurgical coke quality, corrugated roll, mesh parameters, shock-absorbing device, adjustment of the compression ratio of springs, loading mode
Библиографический список

1. Korotich V. I., Frolov Yu. A., Bezdezhsky T. N. Agglomeration of ore materials. Scientific publication. Ekaterinburg : GOU VPO "UGTU-UPI", 2003. 400 p.
2. Frolov Yu. A. Agglomeration: technology, heat engineering, management, ecology. Moscow : Metallurgizdat, 2016. 672 p.
3. Mishchenko I. M. Improvement of technology and equipment for sintering production. Metallurgical processes and equipment. Donetsk : Izdatelstvo assotsiatsii mekhanikov «AssoM» Tekhnopark DonNTU, 2011. pp. 35–44.
4. Subba Rao D. V. Minerals and coal process calculations. London : Taylor & Francis Group, 2016. 354 p.
5. Klushantsev B. V., Kosarev A. I., Muizemnek Yu. A. Crushers. Design, calculation, operating features. Moscow : Mashinostroenie, 1990. 320 p.
6. Perov V. A., Andreev S. E., Bilenko L. F. Crushing, grinding and screening of minerals. Moscow : Nedra, 1990. 301 p.
7. Egbe E. A. P., Olugboji O. A. Design, fabrication and testing of a double roll crusher. International Journal of Engineering Trends and Technology (IJETT). 2016. Vol. 35. Iss. 11. pp. 511–515.
8. Basyrov I. I., Bardovsky A. D. Innovative crushing method and design of a vertical roller crusher for crushing rock mass. Gorny informatsionno-analiticheskiy byulleten. 2020. No. 2. pp. 121–129. DOI: 10.25018/0236-1493-2020-2-0-121-129
9. Lieberwirth H., Silbermann F., Szczelina P. New insights into double roll crushing. Minerals Engineering. 2023. Vol. 202. 108298. DOI: 10.1016/j.mineng.2023.108298
10. Lei L., Qi Tan, Lu Liu, Wenjun Li et al. Comparison of grinding characteristics in high-pressure grinding roller (HPGR) and cone crusher (CC). Physicochemical Problems of Mineral Processing. 2017. Vol. 53, Iss. 2. pp. 1009–1022.
11. Yang D. et al. Recent patents on roll crushing mills for selective crushing of coal and gangue. Recent Patents on Mechanical Engineering. 2020. Vol. 13, Iss. 1. pp. 2–12. DOI: 10.2174/2212797613666200109112255
12. Anticoi H. et al. An improved high-pressure roll crusher model for tungsten and tantalum ores. Minerals. 2018. Vol. 8. 483.
13. Vlasenko D. A. Modeling and industrial development of grinding processes in roller mills with corrugated rolls. Steel in Translation. 2022. Vol. 52. No. 4. pp. 445–450. DOI: 10.3103/S0967091222040179
14. Bardovsky A. D., Gerasimova A. A., Bibikov P. Ya. Principles of improvement of milling equipment. Gornyi Zhurnal. 2020. No. 3. pp. 56–59.
15. Vlasenko D. A. Justification of rational energy-power parameters of the drive of roll crushers. Steel in Translation. 2023. Vol. 53. No. 7. pp. 640–647. DOI: 10.3103/S0967091223070124
16. Vlasenko D. A. Development of the theory of crushing processes and the practice of improvement of roll crushers with smooth and grooved rolls : monograph. Alchevsk : GOU VO LNR "DonGTI", 2022. 172 p.
17. Yakobson M. O. Unified system of scheduled preventive maintenance and rational operation of process equipment. Moscow : Mashinostroenie, 1967. 592 p.
18. Bondarenko E. V., Faskiev R. S. Fundamentals of design and operation of technological equipment. Moscow : Akademiya, 2011. 304 p.
19. Belay G. E., Dembovsky V. V., Sotsenko O. V. Organization of a metallurgical experiment : textbook for universities. Moscow : Metallurgiya, 1993. 256 p.
20. Brownlee K. A. Statistical theory and methodology in science and technology. Edited by L. N. Bolshev. Moscow : Nauka, 1977, 407 p.
21. Armin I. Approximation theory and algorithms for data analysis (Texts in applied mathematics). Springer, 2018. 358 p.
22. Zadneprovsky R. P. On the energy intensity of destruction of bodies taking into account their physical state and loading mode. Vestnik Tambovskogo universiteta. Seriya: Estestvennye i tekhnicheskie nauki. 2016. Vol. 3. pp. 826–829.
23. Holmberg К. Global energy consumption due to friction and wear in the mining industry. Tribology International. 2017. Vol. 115. pp. 116–139.
24. Nikitin A. G., Fastykovsky A. R., Shabunov M. E. et al. Prospects for the development of energy-saving methods for crushing brittle materials. Izvestiya vuzov. Chernaya metallurgiya. 2021. Vol. 64. No. 6. pp. 442–446. DOI: 10.17073/0368-0797-2021-6-442-446
25. Zhiltsov A. P., Bilan G. A., Vlasenko D. A., Levchenko E. P. Roll of a four-roll crusher. Patent RF, No. 188107. Applied: 27.09.2018. Published: 28.03.2019. Bulletin No. 10.
26. Vlasenko D. A. Experimental substantiation of the methodology for determination of design parameters of the rolls of a roll crusher with a corrugated surface of tires. Vestnik Donetskogo natsionalnogo tekhnicheskogo universiteta. 2021. Iss. 1 (23). pp. 3–10.
27. Nikerov V. A. Physics for universities. Mechanics and molecular physics. Moscow : Izdatelsko-torgovaya korporatsiya "Dashkov i Ko", 2012. 136 p.
28. Vlasenko D. A., Dolgikh V. P. Study of the process of brittle bodies destruction by compressive deformation in roller crushers. Transportnoe, gornoe i stroitelnoe mashinostroenie: nauka i proizvodstvo. 2023. No. 20. pp. 46–52. DOI: 10.26160/2658-3305-2023-20-46-52
29. Vlasenko D. A. Refined methodology for determination of energy-power parameters of grinding process in roller crushers. Vestnik Donetskogo natsionalnogo tekhnicheskogo universiteta. 2020. No. 3 (21). pp. 3–9.
30. Ter-Krikorov A. M., Shabunin M. I. Course of mathematical analysis: textbook for universities. 3rd edition. Moscow : Binom. Laboratoriya znaniy, 2015. 672 p.
31. GOST 5.1261–72. Blast furnace coke from coals of Donetsk and Kuznetsk basins and from charge of Cherepovets Metallurgical Works. Quality requirements for certified products. Introduced: 15.02.1972.
32. New reference book for chemist and technologist. Processes and apparatus of chemical technologies. Part I. Edited by G. M. Ostrovsky. Saint Petersburg : ANO NPO "Professional", 2004. 848 p.
33. Novokhatsky A. M., Blinov A. M., Bobrov A. Yu. Physical properties of materials in the blast furnace hearth. Collection of scientific works of the State Educational Institution of Higher Professional Education of the LPR "Donetsk State Technical University". Alchevsk : GOU VPO LNR "DonGTI", 2018. No. 9 (52). pp. 75–79.
34. GOST ISO 10816-1–97. Mechanical vibration. Evaluation of machine vibration by measurements on non-rotating parts. Part 1. General guidelines. Introduced: 01.07.1999.
35. Technical Specification 4277-076-54981193–15. Vibration measuring device "Quartz 2". Serial release. Introduced: 21.04.2016.
36. GOST 29329–92. Balance for static weighing. General technical requirements. Introduced: 01.01.1994.
37. GOST 2093–82. Solid fuel. Size analysis. Introduced: 01.01.1983.

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