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HYBRID GEOTECHNOLOGY: SUSTAINABLE AND ENVIRONMENTALLY SOUND MINERAL MINING
Название Improvement of friction rock bolt anchorage design and installation
DOI 10.17580/gzh.2016.05.05
Автор Zubkov A. A., Zubkov A. V., Kutlubaev I. M., Latkin V. V.
Информация об авторе

UralEnergoResurs, Ekaterinburg, Russia:
A. A. Zubkov, Deputy Director, Candidate of Engineering Sciences

 

Ural Branch, Russian Academy of Sciences, Russia:
A. V. Zubkov, Chief Researcher, Doctor of Engineering Sciences

 

Nosov Magnitogorsk State Technical University, Magnitogorsk, Russia:
I. M. Kutlubaev, Professor, Doctor of Engineering Sciences, ptmr74@mail.ru
V. V. Latkin, Post-Graduate Student

Реферат

One of the modern methods of lining of mine workings is based on the use of friction rock stabilizers (FRS). Their application allows high degree of automation of the entire work process. As an anchor rod, a hollow cylinder with a longitudinal groove along its length is used. Due to the diff erence between its outer diameter and the diameter of the hole created by the frictional force, locking of the anchor from shifting is ensured. Functionality of the bolting is determined by its capacity to bear frictional load and by the type of the rod support assembly interacting with the baseplate. To increase the bearing capacity of the support unit, a new design solution is proposed. It is based on the creation of a system consisting of the support ring welded to the rod and the support of the lock formed during the installation process. In the conventional design of the supporting units of foreign manufacture, the external load gives rise to shear stresses in the weld. In the new technical solution developed and patented by the Russian company UralEnergoResurs, normal stresses additionally appear in the supporting lock. The experimental study of bearing capacity of the traditional design support unit TFA and new FRS has been carried out. It is found that the magnitude of the bearing axial force increases by 22–27% due to the lock support. The new key sample unit requires changing technology of roof bolting to provide correct sequence of operations performed. The article identifi es options for advanced technological solutions to strengthen mine exposures based on the design of roof bolting with FRS.
The authors acknowledge the participation of S. S. Neugomonov, Associate Professor, Candidate of Engineering Sciences, and P. V. Volkov, Senior Lecturer, Candidate of Engineering Sciences (Nosov Magnitogorsk State Technical University).

Ключевые слова Friction rock stabilizer, support unit, load bearing capacity, normal stresses, weld, axial force, experiment, installation technology
Библиографический список

1. Masaev Yu. A., Masaev V. Yu., Filina L. D. Novye razrabotki v oblasti krepleniya i povysheniya ustoychivosti porodnykh obnazheniy v gornykh vyrabotkakh (New developments in the area of support and increasing of rock uncovering stability in excavations). Vestnik Kuzbasskogo gosudarstvennogo tekhnicheskogo universiteta = Vestnik of Kuzbass State Technical University. 2015. No. 1. pp. 41-44.
2. Zagorodnyuk V. P. Puti sovershenstvovaniya stalepolimernoy ankernoy krepi (Ways of improvement of steel-polymeric roof bolting). Gornyy informatsionno-analiticheskiy byulleten = Mining Informational and Analytical Bulletin. 2011. No. 5. pp. 375–378.
3. Voznesenskiy A. S., Voznesenskiy E. A., Koryakin V. V., Krasilov M. N. Printsipy postroeniya i perspektivy razvitiya ustroystv kontrolya massiva gornykh porod i krepleniya vokrug vyrabotok (Principles of construction and development prospects of the units of control of rock massif and support around excavations). Gornyy informatsionno-analiticheskiy byulleten = Mining Informational and Analytical Bulletin. 2015. No. 1. pp. 199–206.
4. Remezov A. V., Zharov A. I. Odin anker reshaet neskol'ko zadach (One anchor solves several problems). Vestnik Kuzbasskogo gosudarstvennogo tekhnicheskogo universiteta = Vestnik of Kuzbass State Technical University. 2012. No. 4. pp. 29–32.
5. Bedarev N. T., Lyubimov O. V., Sitnikov G. A., Kovalev N. B. Povyshenie effektivnosti kontrolya raboty ankernykh krepey (Increasing of efficiency of the control of roof bolting work). Vestnik Kuzbasskogo gosudarstvennogo tekhnicheskogo universiteta = Vestnik of Kuzbass State Technical University. 2012. No. 6. pp. 59-61.
6. Herman Lindeboom. Friction rock stabilizer. Patent US, No. 4126004. Applied: August 04, 1977. Published: November 21, 1978.
7. Dolsak W. Technical Advances of Self-Drilling Rock Reinforcement and Ground Control Systems. Proceedings of the World Tunnel Congress 2008, September 22–24, 2008, Agra, Indian. By editor Kanjlia, V. K. et al. Central Board of Irrigation and Power. New Delhi, 2008.
8. Trenaman C., Gienau R. The Use of Hilti OneStep Bolts at Broadmeadow Mine. Proceedings of the 6th International Symposium Rockbolting in Mining & Injection Technology and Roadway Support Systems 2008. Aachen, 2008. pp. 481–495.
9. Neugebauer E. A new rock bolting concept for underground excavations under high stress conditions. Mining & Quarry World. December 2010. Vol. 7, Iss. 4. p. 36.
10. Zubkov A. A., Latkin V. V., Neugomonov S. S., Volkov P. V. Perspektivnye sposoby krepleniya gornykh vyrabotok na podzemnykh rudnikakh (Prospective methods of excavation timbering on underground mines). Gornyy informatsionno-analiticheskiy byulleten = Mining Informational and Analytical Bulletin. 2014. No. 10. pp. 106–117.
11. Eremenko V. A., Razumov E. A., Zayatdinov D. F. Sovremennye tekhnologii ankernogo krepleniya (Modern anchorage technologies). Gornyy informatsionno-analiticheskiy byulleten = Mining Informational and Analytical Bulletin. 2012. No. 12. pp. 38–45.
12. Geotechnical Design for Sublevel Open Stoping. Ernesto Villaescusa. 2014 by Taylor & Francis Group, LLC CRC Press is an imprint of Taylor & Francis Group, an Informa business. International Standard Book Number — 13:978-1-4822-1189-4 (eBook - PDF). pp. 315–399.
13. SME mining engineering handbook. By editor Peter Darling. 3rd ed v. cm. Society for Mining. Metallurgy, and Exploration. Inc 2011. 14. Wiegard J. Injection/Bolting Systems with immediate Load Bearing Capacity, according to One/Two Step Procedure. Proceedings of the 6th International Symposium Rockbolting in Mining & Injection Technology and Roadway Support Systems 2008. Aachen, 2008. pp. 481–495.
15. Luo J., Haycocks C., Karmis M., Westman E. Overview of U.S. rock bolting. Coal International. 2001. Vol. 249, Iss. 1. p. 30.
16. Split Set. Available at : http://www.splitset.com/ (accessed: May 10, 2016).
17. Zubkov A. A., Zubkov A. E. Ankernaya krep (Roof bolting). Patent RF, No. 95029, E21D21/00. Applied: June 25, 2009. Published: June 10, 2010.
18. Kopytov A. I., Voytov M. D., Tripus T. E. Raschet trubchatogo ankera friktsionnogo tipa na nesushchuyu sposobnost (Bearing test of friction tubular bolt). Vestnik Kuzbasskogo gosudarstvennogo tekhnicheskogo universiteta = Vestnik of Kuzbass State Technical University. 2012. No. 4. pp. 8–10.
19. Voytov M. D. Tripus T. E. Razrabotka novoy konstruktsii trubchatogo ankera friktsionnogo tipa (Development of new friction tubular bolt design). Energeticheskaya bezopasnost Rossii. Novye podkhody k razvitiyu ugolnoy promyshlennosti : trudy mezhdunarodnoy nauchno-prakticheskoy konferentsii (Energy safety of Russia. New approaches to the development of coal industry : proceedings of international scientific-practical conference). Kemerovo : Kemerovo Science Center, Institute of Coal, Institute of Coal Chemistry and Material Science (Siberian Branch of Russian Academy of Sciences), Kuzbass State Technical University, LLC «Kuzbass Exhibition Center «Expo-Siberia», 2012. pp. 55–57.
20. Zubkov A. A., Neugomonov S. S., Volkov P. V. Samozakreplyayushchayasya ankernaya krep: opisanie, usloviya i rezultaty primeneniya (Self-attaching anchor support: description, conditions and results of application). Krasnoyarsk : LLC «Globus», 2014. No. 5(34). pp. 40–42.
21. Ground Control Solutions for Tunneling and Mining. Dywidag-Systems International: Information brochure, 2013. p. 168.
22. Zubkov A. A. Inektsionnyy anker (Injection anchor). Patent RF, No. 143204, E21D21/00. Applied: February 03, 2014. Published: July 20, 2014. Bulletin No. 20.
23. Zubkov A. A., Zubkov A. E. Opornaya shayba (Support washer). Patent RF, No. 158225, E21D21/00. Applied: June 04, 2015. Published: December 27, 2015.
24. Zubkov A. A., Zubkov A. E., Mukhamedyarova M. S. Sektsiya ankernoy krepi (Roof bolting section). Patent RF, No. 158226, E21D21/00. Applied: May 06, 2015. Published: December 27, 2015.

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