Influence of Rock Properties on Blasting Vibration Propagation

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Authors

  • College of Mining Engineering, University of Science and Technology, Liaoning, Anshan 114 051, Liaoning ,CN
  • College of Mining Engineering, University of Science and Technology, Liaoning, Anshan 114 051, Liaoning ,CN
  • College of Mining Engineering, University of Science and Technology, Liaoning, Anshan 114 051, Liaoning ,CN

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Abstract

In order to know the relationship between mechanical properties of rock and blasting vibration propagation laws during the process of blasting excavation in opencast iron mine, attenuation trends of blast vibration velocity in migmatite, granite, magnetite quartzite are studied by testing the mechanical parameters in blasting area and blasting vibration. What is more, explosive energy' utilization characters in the process of blasting are analyzed based on the blasting vibration data. The results show that different attenuation trends are showed in different directions on different rocks. Besides, explosive's energy availability factor is related to attenuation coefficient of the rock, it is shown that explosive's energy availability factors of granite and magnetite quartzite are inferior to that of migmatite. Furthermore, the integrity of rock structure can be estimated if the attenuation features of blasting vibration velocity are known, which can provide guidance to the optimization of blasting design.

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Published

2022-10-18

How to Cite

Xu, Z.- yang, Yu, Y.- ning, & Guo, L.- jun. (2022). Influence of Rock Properties on Blasting Vibration Propagation. Journal of Mines, Metals and Fuels, 64(8), 360–366. Retrieved from https://informaticsjournals.com/index.php/jmmf/article/view/31560

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References

Pang, H. D. and Chen, S. H. (2009): “Study on the variation law of blasting seismic wave's propagation in elastic media.” Journal of Vibration and Shock, 28 (3): 105-107.

Xie, H. P. and Chen, Z. H. (2008): “Rock Mechanics.” Beijing: Science Press.

Zhao, Z. H. and Xie, H. P. (2008): “Energy transfer and energy dissipation in Rock deformation and Fracture.” Journal of Sichuan University (Engineering Science Edition), 40 (2): 26-31.

You, M. Q. and Hua, A. Z. (2002): “Energy analysis on failure process of rock specimens.” Chinese Journal of Rock Mechanics and Engineering, 21 (6): 778-781.

Wang, Q. Z., Li, W. and Xie, H. P. (2009): “Dynamic split tensile test of flattened Brazilian disc of rock with SHPB setup.” Mechanics of Materials, 41 (3): 252-260.

Wang, Q. Z., Li, W. and Song, X. L. (2006): “A method for testing dynamic tensile strength and elastic modulus of rock materials using SHPB.” Pure and Applied Geophysics, 163 (5-6): 1091-1100.

Yan, H. H., Li, X. J. and Qu, Y. D. et al. (2007): “Fine analysis of blasting vibration velocity testing.” Rock and Soil Mechanics, 28 (10): 2091-2094.

X. X., Li, H. B. and Li, J. R. et al. (2008): “Research on vibration safety threshold for rock under blasting excavation.” Rock and Soil Mechanics, 29 (11): 2945-2944.

Xu, H. T. and Lu, W. B. (2002): “Advance on Safety Criteria for Blasting Vibration.” Blasting, 19 (l): 8-10.

Xu, Z. Y., Yang, J. and Chen Z. Y. et al. (2014): “Blasting seismic waves energy distribution study based on EEMD.” Journal of Vibration and Shock, 33 (11), 38-42.

Singh, M. M. and Mandal, S. K. (2007): “Mechanics of rock breakage by blasting and its application in blasting design.” Journal of Mines, Metals and Fuels, 55 (6-7): 183-189.

Spathis, A. T. (1999): “On the energy efficiency of blasting.” Proceedings of the sixth international symposium on rock fragmentation by blasting, Johannesburg, August: 81-90.

Achenbach, J. D. (1975): “Wave propagation in elastic solids.” Amsterdam: Elsevier.

Guo, X. B., Xiao, Z. X. and Zhang, J. C. et al. (2006): “On attenuating characteristic of blasting seismic waves in propagating process.” China Mining Magazine, 15 (3): 51-57.

Zhang, S. Q. and Guo, J. M. (1984): “On the coupling factor of an explosion.” Chinese Journal of Geophysics, 27 (6): 537-548.

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