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Influence of Charge Hole Spacing on the Crack Propagation Behavior under the Effect of Empty-Hole Directional Blasting

机译:电荷孔间距对空洞定向爆破作用下裂纹传播行为的影响

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In order to explore the reasonable spacing of charge holes in empty-hole directional blasting, based on the action mechanism of empty-hole directional blasting, the influence of charge hole spacing on crack propagation is studied, the calculation formula of charge hole spacing is deduced, and the blasting excavation process in Shijiazhuang South Ring Expressway Tunnel is simulated by finite element software. The results show that by setting empty holes on both sides of the charge holes in the peripheral blasting, the guiding cracks can be formed in the connecting direction between the empty hole and the charge hole, the propagation of cracks in other directions can be suppressed, and the spacing of charge holes can be enlarged. Reasonable charge hole spacing is very important to realize the effect of empty-hole directional blasting; the spacing is small, the rock will be overbroken, and the utilization ratio of explosives is reduced; large spacing, the guiding effect of empty holes is weak, and the effective directional cracks cannot be formed. The spacing between charge holes is closely related to the mechanical properties of rock, detonation parameters of explosive, and aperture of the charge hole and empty hole. According to the simulation results of crack propagation in different spacing, the blasting performance is the best when the charge hole spacing is 800–1000?mm, which is completely consistent with the theoretical calculation result of charge hole spacing 948?mm.
机译:为了探讨空洞定向爆破中的电荷孔的合理间隔,基于空洞定向爆破的动作机制,研究了电荷孔间距对裂纹传播的影响,推导了电荷孔间距的计算公式并且通过有限元软件模拟石家庄南环高速公路隧道的爆破挖掘过程。结果表明,通过在外围爆破中的电荷孔的两侧设定空洞,可以在空洞和电荷孔之间形成引导裂缝,可以抑制裂缝在其他方向上的传播,可以放大电荷孔的间距。合理的电荷孔间距非常重要,可以实现空洞定向爆破的影响;间距很小,岩石将被覆盖,爆炸物的利用率降低;大间距,空洞的引导效果较弱,无法形成有效的定向裂缝。电荷孔之间的间距与岩石,爆炸参数的机械性能密切相关,爆炸孔和空洞的孔径。根据不同间隔的裂纹传播的仿真结果,当充电孔间距为800-1000ΩΩmm时,爆破性能是最佳的,这与充电孔间距948Ωmm的理论计算结果完全一致。

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