Журналы →  Gornyi Zhurnal →  2020 →  №4 →  Назад

EQUIPMENT AND MATERIALS
Название Parametric optimization of cutting tools of coal mining machines
DOI 10.17580/gzh.2020.04.11
Автор Zakharov V. N., Linnik Yu. N., Linnik V. Yu., Zhabin A. B.
Информация об авторе

Academician Melnikov Research Institute of Comprehensive Exploitation of Mineral Resources, Russian Academy of Sciences, Moscow, Russia:

V. N. Zakharov, Director, Corresponding Member of the Russian Academy of Sciences

 

State University of Management, Moscow, Russia:

Yu. N. Linnik, Professor, Doctor of Engineering Sciences
V. Yu. Linnik, Professor, Doctor of Economic Sciences, vy_linnik@guu.ru

 

Tula State University, Tula, Russia:

A. B. Zhabin, Professor, Doctor of Engineering Sciences

Реферат

Efficient performance and reliability of coal mining machines is in many ways governed by the appropriate selection and optimization of the parameters of their cutting tools. In parametric optimization of a cutting head under specific operating conditions, the source information is a coal cutting pattern and the related cutter arrangement pattern. The main parameters of the cutting patterns and cutter arrangement patterns are the cut thickness and width, cutter spacing, cutters per cutting line, and the cutter angle relative to coal mining machine advance. Coal mining machines most often use checkerboard, sequential and mixed patterns of cutting. Given specific cutting patterns and cutter arrangement patterns, their parametric optimization is based on the coal cutting efficiency, minimum energy consumption of coal destruction under the operating constraints, and the minimum allowable coefficient of variation in the total cutting force on the cutting tools in the specific operating conditions. In this respect, the authors review the factors governing optimality of coal cutting process with regard to the limited conveying ability of a cutting head and the limited cut thickness which determine specific energy of coal cutting and productivity of mining machines. The formulas and the calculations show that some certain-size coal cutting machines are satisfied with two rotation speed steps and two–three variants of cutters per cutting line to ensure operation with rational cut thicknesses within the whole range of the machine advance velocity. The cutter arrangement pattern on a cutting tool essentially governs load nonuniformity of a cutting head per revolution, which determines dynamic loading of the machine and reliability of transmission. In this respect, the estimated relations are presented to find the cutting head load nonuniformity factor and the structural coefficient of load variation, as well as the admissible values of the latter in the standard operating conditions.

Ключевые слова Coal mining machine, cutting tool, cutter arrangement pattern parameters, energy consumption, cut thickness, load nonuniformity, parametric optimization
Библиографический список

1. Merzlyakov V. G. Scope and Method to Determine Forces Cutting and Feed on the Cutting Tool Hydromechanical Road Headers. Gornoe oborudovanie i elektromekhanika. 2014. No. 11(108). pp. 41–44.
2. Zhabin A. B., Polyakov An. V., Polyakov Al. V., Murashov V. V. Optimization of cutter pattern on cutting heads of continuous heading machines. Gornyi Zhurnal. 2016. No. 12. pp. 78–82. DOI: 10.17580/gzh.2016.12.16
3. Zhabin A. B., Lavit I. M., Chebotarev P. N., Polyakov An. V. Application of Fracture Mechanics Methods for Calculation of Loads Acting on the Cutters of Coal Mining Machines. Gornoe oborudovanie i elektromekhanika. 2017. No. 3(130). pp. 28–34.
4. Khoreshok A. A., Mametiev L. E., Tsekhin A. M., Borisov A. Yu., Burkov P. V. et al. Manufacture and Operation of Rock-Breaking Tools of Mining Machines. Tomsk : TPU, 2013. 296 p.
5. Khoreshok A. A., Tsekhin A. M., Borisov A. Yu. Influence of conditions of exploitation of mining combines on construction of their operating parts. Gornoe oborudovanie i elektromekhanika. 2012. No. 6. pp. 2–5.
6. Gibadullin A. A., Gilts N. E., Romanova Ju. A., Romanova Ir. N., Bahretdinova Kh. A. The development strategy of the environmental safety of the electric power complex. IOP Conference Series: Materials Science and Engineering. 2019. Vol. 537, No. 4. 042065. DOI: 10.1088/1757-899X/537/4/042065
7. Morkovkin D. E., Gibadullin A. A., Romanova Ju. A., Erygin Yu. V., Ziadullaev Ul. S. Formation of a national environmental strategy for the fuel and energy complex. IOP Conference Series: Materials Science and Engineering. 2019. Vol. 537, No. 4. 042064. DOI: 10.1088/1757-899X/537/4/042064
8. Rakuta N. V., Sitokhova T. E. Conceptual approaches to the formation of regional economic clusters. Upravlenie. 2019. Vol. 7, No. 4. pp. 76–83.
9. Pozin E. Z., Melamed V. Z., Ton V. V. Coal cutting by shearers. Moscow : Nedra, 1984. 286 p.
10. Gabov V. V., Shishlyannikov D .I., Chekmasov N. V. Improving the Efficiency of Separation of Potash ore from the Array Using a Chess Symmetric Cross-Cutting Scheme. Gornoe oborudovanie i elektromekhanika. 2012. No. 11. pp. 41–44.
11. OST 12.44.286-85. Narrow-web shearer drums. Types and basic dimensions. Moscow, 1987. 8 p.
12. OST. Shearers. Selecting parameters and calculating forces of cutting and advance on drums. Procedure. Moscow, 1984. 108 p.
13. Naeimipour A., Rostami J., Buyuksagis I. S., Frough O. Estimation of rock strength using scratch test by a miniature disc cutter on rock cores or inside boreholes. International Journal of Rock Mechanics and Mining Sciences. 2018. Vol. 107. pp. 9–18.
14. Yiwen Ju, Luxbacher K., Xiaoshi Li, Guochang Wang, Zhifeng Yan et al. Micro-structural evolution and their effects on physical properties in different types of tectonically deformed coals. International Journal of Coal Science & Technology. 2014. Vol. 1, Iss. 3. pp. 364–375.
15. Prokopenko S., Sushko A., Kurzina I. New design of cutters for coal mining machines. IOP Conference Series: Materials Science and Engineering. 2015. Vol. 91. 012058. DOI: 10.1088/1757-899X/91/1/012058
16. Zakharov V. N., Linnik V. Yu., Linnik Yu. N., Averin E. A. Loading of coal mining machine tools after change in spatial orientation of picks. Eurasian Mining. 2019. No. 1. pp. 40–42. DOI: 10.17580/em.2019.01.10
17. Chenxu Luo, Shuangxi Jing, Jinle Yuan, Piao Sheng, Lan Chen. Design and research of cutting load measuring device for coal and rock. Vibroengineering Procedia. 2017. Vol. 14. pp. 368–373.
18. Gulyaev V. G. Urgency and Problems of Creation of Automation Coal Plough Complexes for Unmanned Excavation of Sloping Low Seams of Donetsk Coalfield. Gornoe oborudovanie i elektromekhanika. 2017. No. 5(132). pp. 14–23.

Language of full-text русский
Полный текст статьи Получить
Назад