Effects of the initiation position on the damage and fracture characteristics of linear-charge blasting in rock

被引:0
作者
Chenxi Ding
Renshu Yang
Xiao Guo
Zhe Sui
Chenglong Xiao
Liyun Yang
机构
[1] University of Science and Technology Beijing,School of Civil and Resource Engineering
[2] China University of Mining and Technology (Beijing),School of Mechanics and Civil Engineering
[3] University of Science and Technology Beijing,School of Mathematics and Physics
[4] Beijing Institute of Technology,State Key Lab of Explosion Science and Technology
来源
International Journal of Minerals, Metallurgy and Materials | 2024年 / 31卷
关键词
blasting; linear charge; initiation position; computed tomography; three-dimensional reconstruction; damage;
D O I
暂无
中图分类号
学科分类号
摘要
To study the effects of the initiation position on the damage and fracture characteristics of linear-charge blasting, blasting model experiments were conducted in this study using computed tomography scanning and three-dimensional reconstruction methods. The fractal damage theory was used to quantify the crack distribution and damage degree of sandstone specimens after blasting. The results showed that regardless of an inverse or top initiation, due to compression deformation and sliding frictional resistance, the plugging medium of the borehole is effective. The energy of the explosive gas near the top of the borehole is consumed. This affects the effective crushing of rocks near the top of the borehole, where the extent of damage to Sections I and II is less than that of Sections III and IV. In addition, the analysis revealed that under conditions of top initiation, the reflected tensile damage of the rock at the free face of the top of the borehole and the compression deformation of the plug and friction consume more blasting energy, resulting in lower blasting energy efficiency for top initiation. As a result, the overall damage degree of the specimens in the top-initiation group was significantly smaller than that in the inverse-initiation group. Under conditions of inverse initiation, the blasting energy efficiency is greater, causing the specimen to experience greater damage. Therefore, in the engineering practice of rock tunnel cut blasting, to utilize blasting energy effectively and enhance the effects of rock fragmentation, using the inverse-initiation method is recommended. In addition, in three-dimensional (3D) rock blasting, the bottom of the borehole has obvious end effects under the conditions of inverse initiation, and the crack distribution at the bottom of the borehole is trumpet-shaped. The occurrence of an end effect in the 3D linear-charge blasting model experiment is related to the initiation position and the blocking condition.
引用
收藏
页码:443 / 451
页数:8
相关论文
共 79 条
[1]  
Xu P(2022)Research progress of the fundamental theory and technology of rock blasting Int. J. Miner. Metall. Mater. 29 705-undefined
[2]  
Yang RS(2012)Optimization and application of blasting parameters based on the “pushing-wall” mechanism Int. J. Miner. Metall. Mater. 19 879-undefined
[3]  
Zuo JJ(2012)Seismic waveforms from explosive sources located in boreholes and initiated in different directions J. Appl. Geophys. 87 81-undefined
[4]  
Ren FY(2018)Optimization of cut-hole’s detonating position in tunnel excavation J. Vib. Shock 37 8-undefined
[5]  
Sow TAM(2019)Effect of initiation location on distribution and utilization of explosion energy during rock blasting Bull. Eng. Geol. Environ. 78 3433-undefined
[6]  
He RX(2022)Study on influence law of initiation position on transmission of explosion energy and its comparison and selection in tunnel cutting blasting China J. Highway Transp. 35 140-undefined
[7]  
Liu XR(2014)Effect of double-primer placement on rock fracture and ore recovery Int. J. Rock Mech. Min. Sci. 71 208-undefined
[8]  
Triviño LF(2021)Effect of detonating position of deep-hole cumulative blasting on coal seam cracking and permeability enhancement J. China Coal Soc. 46 302-undefined
[9]  
Mohanty B(2021)Failure mechanism of rock mass in bench blasting based on structural dynamics Bull. Eng. Geol. Environ. 80 6841-undefined
[10]  
Milkereit B(2021)3-D fracture evolution and water migration in fractured coal under variable stresses induced by fluidized mining: Energy Rep. 7 3060-undefined