Журналы →  Gornyi Zhurnal →  2018 →  №12 →  Назад

EQUIPMENT AND MATERIALS
Название Design parameters of curvilinear sections of belt conveyors in mining
DOI 10.17580/gzh.2018.12.14
Автор Galkin V. I., Sheshko E. E., Dyachenko V. P.
Информация об авторе

College of Mining, NUST MISIS, Moscow, Russia:

V. I. Galkin, Professor, Doctor of Engineering Sciences
E. E. Sheshko, Professor, Candidate of Engineering Sciences, esheshko@mail.ru
V. P. Dyachenko, Associate Professor, Candidate of Engineering Sciences

Реферат

In recent years, long belt conveyors with curves along the route enjoy wide application in mining and in other industries. Such conveyors are advantageous for ecological safety as rehandling points are excluded from the route, for reduction in cost of equipment and elimination of dust formation. This article addresses determination of belt conveyor design parameters such that to ensure stable running of belt without lateral displacement in the curved branches. The authors present formulas for calculating allowable curvature radius and optimum incline of idler for a carrying branch of the curved belt conveyor. Based on the identified types and strength characteristics of the available belts, the authors determine minimum curvature radii for horizontal curves of a belt at the fixed incline of the carrying branch idler on the ground of the review of the international projects of long belt conveyors with horizontal curves. An illustration is given in terms of rubber and aramid conveyor belts of foreign manufacture. Calculation of curved section radius as function of belt strength, friction coefficient between belt and rollers in the carrying branch as well as idler incline in the curved section of belt conveyor is exemplified. The article describes design of rollers that allow reducing curvature radii in the curved branches of belt conveyors.

Ключевые слова Belt conveyor, curved section, roller, idler, type of belt, curvature radius, idler incline, friction coefficient between belt and rollers, intermediate drive.
Библиографический список

1. Monastyrskiy V. F., Kiriya R. V., Nomerovskiy D. A., Braginets D. D. High-angle conveyors for transportation of lumpy cargo in mining industry. Gornyi Zhurnal. 2013. No. 12. pp. 78–81.
2. Jennings A., Perrone P., Cornet J. Case study: correcting control problems on Essroc’s multi-drive station horizontally curved conveyor. Transactions of the Society for Mining, Metallurgy, and Exploration. 2013. Vol. 334, No. 1. pp. 472–476.
3. Neumann T. ContiTech Tubular Conveyer Bands - an Excelent Transport Solution! Ugol. 2013. No. 3. pp. 76–77.
4. Koenova Y. I., Masyagin A. V. Foreign research on conveyor belt characteristics, produced with the use of nanomaterials. Podemno-transportnoe delo. 2014. No. 3-4(77). pp. 29–33.
5. Drebenstedt C., Ritter R., Suprun V. I., Agafonov Yu. G. Cyclical-and-continuous method and in-pit crushing operation experience in the world. Gornyi Zhurnal. 2015. No. 11. pp. 81–87. DOI: 10.17580/gzh.2015.11.17
6. Galkin V. I., Sheshko E. E. Belt conveyors at the current stage of development in mining machinery. Gornyi Zhurnal. 2017. No. 9. pp. 85–89. DOI: 10.17580/gzh.2017.09.15
7. Agafonov Y., Suprun V., Pastikhin D., Radchenko S. Problems and Prospects of Cyclic-and-Continuous Technology in Development of Large Ore-and Coalfields. Proceedings of the 12th International Symposium Continuous Surface Mining. Aachen : Springer, 2014. pp. 437–445.
8. Galkin V. I. Design features of belt conveyors with spatial track for transporting bulk materials. Gornaya promyshlennost. 2018. No. 1(137). pp. 84–86.
9. El Abra Project. Conveyor Dynamics, Inc., 2016. Available at: http://conveyor-dynamics.com/index.php/project/el-abra/ (accessed: 15.04.2018).
10. Grimmer K. J., Kessler F. Spezielle Betrachtungen zur Gurtlaufrichtung bei Gurtforderern mit Horizontalkurven. Teil II: Verbeserung des herkommlichen Berechnungsverfahren. Berg- und Hüttenmännische Monatshefte. 1987. No. 6. ss. 206–2011.
11. Thompson M., Jennings A. Impumelelo coal mine is home to the world's longest belt conveyor. Mining Engineering. 2016. Vol. 68, Iss. 10. pp. 14–35.
12. Lauhoff H. Design of Belt Conveyors with Horizontal Conveyors in Special Consideration of the Belt Speed. 2012. Available at: http://www.saimh.co.za/beltcon/beltcon5/paper54.htm (accessed: 15.04.2018).
13. Grabner K., Grimmer K. J., Kessler F. Investigation into normal forses between belt fnd idlers at critical locations on the belt – conveyor track. Bulk Solids Handling. 1993. No. 4. pp. 727–734.
14. Shakhmeister L. G., Dmitriev V. G. Theory and Calculation of Belt Conveyors. Moscow : Mashinostroenie, 1978. 392 p.
15. Lieberwirth H. Design of Belt Conveyors with Horizontal Curves. Available at: http://www.ckit.co.za/secure/conveyor/papers/bulk-solids-handling/horizontalcurve.html (accessed: 15.04.2018).
16. Alspaugh M. A. Latest Developments in Belt Conveyor Technology : presented at MINExpo. Overland Conveyor Co., Inc. Las Vegas, 2004. Available at: http://www.overlandconveyor.com/pdf/latest developments in belt conveyor technology.pdf (accessed: 19.04.2018).
17. Phoenix Conveyor Belts Design Fundamentals. Phoenix. Hamburg, 2004. Available at: http://krk.com.br/antigo/html/produtos/phoenix/Design_Fundamentals.pdf (accessed: 19.04.2018).
18. Screening and Conveyor Solutions : Trellex Aramid Conveyor Belts. Metso Minerals. Trelleborg, 2013. Available at: http://pdf.directindustry.com/pdf/metso-automation/trellex-aramid-conveyorbelts/7017-597846.html (accessed: 15.04.2018).
19. Helix delta-T Horizontal Curves. Helix Technologies, 2018. Available at: http://www.helixtech.com.au/T6ConvHorizCurves.aspx (accessed: 15.04.2018).
20. Conveyors. Robbins. Available at: http://www.therobbinscompany.com/ru/nashaproduktsiya/conveyors/ (accessed: 15.04.2018).

Language of full-text русский
Полный текст статьи Получить
Назад