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Penetration Form of Inter-Hole Cracks under Double-Hole Blasting Conditions with Inclined Fissures

机译:具有倾斜裂缝的双孔喷射条件下的孔间裂缝的穿透形式

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During blasting construction in tunnel engineering, an inclined fissure near the blast hole produces the “ Z ” type of over-excavation and subsequently affects the overall blasting effect and stability of the tunnel. In this work, dynamic caustics testing was used to study the burst propagation mode and penetration form of explosive cracks at different positions between holes under double-hole blasting conditions. Results showed that the existence of gently inclined cracks changed the propagation law of explosive stress wave. The dominant fracture surface was formed in the vertical direction between the borehole and the fracture. Finally, the crack penetrates to form “ Z ”-type over-excavation, which was analyzed by the dynamic caustics test. The expansion velocity of the burst crack reached the maximum under the reflection of the explosion stress wave and then decreased with the attenuation of the stress wave intensity. The peak propagation velocity decreased with the increasing vertical distance between the prefabricated fracture and the borehole, and the stress intensity factor at the crack tip immediately reached its peak value after detonation, and the oscillation then decreased. These research results can serve a basis for reducing tunnel blasting over-excavation under this condition and optimizing blasting parameters.
机译:在隧道工程中的爆破结构期间,爆破孔附近的倾斜裂缝产生“Z”类型的过挖掘,随后影响隧道的整体爆破效果和稳定性。在这项工作中,使用动态苛性耐药性测试来研究双孔喷砂条件下孔之间的不同位置处的爆发传播模式和渗透形式。结果表明,倾斜裂缝的存在改变了爆炸应力波的传播规律。在钻孔和裂缝之间的垂直方向上形成显性骨折表面。最后,裂纹渗透以形成“Z”型过挖掘,通过动态焦化测试分析。突发裂纹的膨胀速度在爆炸应力波的反射下达到最大值,然后随着应力波强度的衰减而降低。峰值传播速度随着预制骨折和钻孔之间的垂直距离的增加而降低,并且裂纹尖端处的应力强度因子立即达到爆炸后的峰值,然后振荡减少。这些研究结果可以为在这种情况下减少隧道爆破过挖掘的基础,并优化爆破参数。

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