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PHYSICS OF ROCKS AND PROCESSES
Название Estimation of strength properties of Streltsov field uranium ore
DOI 10.17580/gzh.2018.04.09
Автор Lizunkin V. M., Babello V. A., Lizunkin M. V., Beidin A. V.
Информация об авторе

Transbaikal State University, Chita, Russia:
V. M. Lizunkin, Professor, Doctor of Engineering Sciences
V. A. Babello, Professor, Doctor of Engineering Sciences
M. V. Lizunkin, Associate Professor, Candidate of Engineering Sciences, LMV1972@mail.ru
A. V. Beidin, Senior Lecturer

Реферат

In some underground mining methods, it often happens that caved rocks or backfill made of gangue, or broken ore occur in a mined-out area (e.g. shrinkage stoping, in-situ leaching). Accordingly, it is important to know features of variation in the strength properties of such rocks and their influence on stress state of enclosing rock mass. The computer-aided mathematical modeling of stress/strain state involves various characteristics of mechanical properties of rocks. In this connection, higher requirements are imposed on reliability of determination of characteristics of these properties. Among the most important characteristics of strength of rocks and, in particular, broken ore, there are the internal friction angle and cohesion. At the same time, the research into strength of broken hard rocks is deficient due to complexity and high labor content of the in situ investigations, as a rule. This study aimed to determine characteristics of strength properties of hard broken rocks of various grain-size compositions. A feature of the experimental procedure was the purpose-made large-scale test bench used to eliminate the influence of scale factor on the experimental results. In the tests, the method of solid ore block shear was implemented. The article provides the results of the experimental research into the strength parameters of hard broken rocks of various grain-size compositions. The obtained data should be taken into account in modeling stress state of rocks.

Ключевые слова Hard broken rocks, grain-size composition, weighted mean size of fragment, test bench, strength properties, internal friction angle, cohesion, solid block shear method
Библиографический список

1. Shurygin S. V., Morozov A. A., Lizunkin V. M., Lizunkin M. V., Beydin A. V. Complex technology of development of poor-balance uranium ores by geotechnological methods. Underground geotechnologies of ore deposits mining. Moscow : Gornaya kniga, 2014. p. 15–28.
2. Lizunkin V. M., Lizunkin M. V., Beydin A. V. Geomechanical substanitiation of design factors of complex technology of development of poor-balance uranium ores. Innovation ways in design of miningextraction enterprises: geoemechanical provision of design and maintenance of mining : collection of scientific proceedings of the VIII International scientific and practical conference. Saint Petersburg : Izdatelstvo Sankt-Peterburgskogo gornogo universiteta, 2017. pp. 56–63.
3. Jaeger J. C., Cook N. G. W., Zimmerman R. W. Fundamentals of Rock Mechanics. 4th ed. Oxford : Blackwell, 2007. 475 p.
4. De Vos M., Whenham V. Innovative design methods in geotechnical engineering. Belgium, 2006. 90 p.
5. Khani A., Baghbanan A., Norouzi S., Hashemolhosseini H. Effects of fracture geometry and stress on the strength of a fractured rock mass. International Journal of Rock Mechanics and Mining Sciences. 2013. Vol. 60. pp. 345–352.
6. Jing L., Min K.-B., Baghbanan A. Stress and Scale-Dependency of Hydromechanical Properties of Fractured Rocks. Rock mechanics: New Research. New York : Nova Science Publishers, 2009. pp. 109–165.
7. Eremin G. M. Increasing of accuracy and reliability of defi nition of strength characteristics of rocks and their properties during rock massif deformations. Gornyy informatsionno-analiticheskiy byulleten. 2000. No. 9. pp. 31–33.
8. Nikolaeva N. V., Taranov V. A., Afanasova A. V. Ore strength analysis in planning ore pretreatment circuit. Gornyi Zhurnal. 2015. No. 12. pp. 9–13. DOI: 10.17580/gzh.2015.12.02
9. Taranov V. A., Baranov V. F., Aleksandrova T. N. Review of software tools for modeling and calculation of ore preparation flowsheets. Obogashchenie Rud. 2013. No. 5. pp. 3–7.
10. Vilkul Yu. G., Peregudov V. V. Influence of granulometric composition of blasted rock mass on technical and economic indicators of pit work. Razrabotka rudnykh mestorozhdeniy. 2011. No. 94. pp. 3–7.
11. ASTM D5731-16. Standard Test Method for Determination of the Point Load Strength Index of Rock and Application to Rock Strength Classifications. Annual Book of ASTM Standards. Vol. 4.08: Soil and Rock (I). West Conshohocken : ASTM International, 2017.
12. Paramonov G. P., Isheyskiy V. A., Kovalevskiy V. N. About distribution of granulometric composition of blasted rock mass and its durability from various failure zones. Marksheyderskiy vestnik. 2014. No. 6. pp. 58–61.
13. Yang Jian Ping, Chen Wei Zhong, Yang Dian Sen, Yuan Jing Qiang. Numerical determination of strength and deformability of fractured rock mass by FEM modelling. Computers and Geotechnics. 2015. Vol. 64. pp. 20–31.
14. Ivars D. M., Pierce M. E., Darcel C., Reyes-Montes J., Potyondy D. O. et al. The synthetic rock mass approach for jointed rock mass modelling. International Journal of Rock Mechanics and Mining Sciences. 2011. Vol. 48, Iss. 2. pp. 219–244.
15. Wittke W. Rock Mechanics Based on an Anisotropic Jointed Rock Model (AJRM). Berlin : Wiley Ernst & Sohn, 2014. 865 p.
16. Tianhong Yang, Peitao Wang, Tao Xu, Qinglei Yu, Penghai Zhang et al. Anisotropic characteristics of jointed rock mass: A case study at Shirengou iron ore mine in China. Tunneling and Underground Space Technology. 2015. Vol. 48. pp. 129–139.
17. Ziangirov R. S., Kalbergenov R. G. Assessment of deformability of macrofragmental soils. Inzhenernaya geologiya. 1987. No. 3. pp. 107–118.
18. GOST 20276-2012. Soils. Field methods for determining the strength and strain characteristics. Introduced: 01.07.2013. Moscow : Standartinform, 2013. 49 p.
19. Krivorotov A. P. Conditions of destruction of ground sample in direct shear apparatus. Izvestiya vuzov. Stroitelstvo. 2000. No. 1. pp. 133–136.
20. Krivorotov A. P. About the reliability of calculations of stability of ground bases and massifs. Izvestiya vuzov. Stroitelstvo. 2000. No. 11. pp. 14–18.
21. Lizunkin V. M., Babello V. A., Lizunkin M. V., Beydin A. V. Determination of Poisson’s ratio in crushed hard rocks of various grain-size composition. Gornyi Zhurnal. 2017. No. 2. pp. 45–50. DOI: 10.17580/gzh.2017.02.08.
22. Protodyakonov M. M., Teder R. I., Ilnitskaya E. I., Yakobashvili O. P., Safronova I. B. et al. Distribution and correlation of indicators of physical properties of rocks : reference book. Moscow : Nedra, 1981. 192 p.
23. Lyubimov N. I., Nosenko L. I. Reference book on physical and mechanical parameters of rocks of mining regions. Moscow : Nedra, 1978. 285 p.

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