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The Effect of Stress Wave Interaction and Delay Timing on Blast-Induced Rock Damage and Fragmentation

机译:应力波相互作用与延迟时机对爆炸岩损伤和碎片的影响

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摘要

Rock fragmentation by blasting is the most efficient way of rock breakage in hard rock mining applications. Fragmentation, as well as the properties of the fragments generated by the explosion, are of significant concern as the energy consumption at the mill is greatly affected by them. Dynamic loading of blasting generates a countless number of microcracks in the host rock, which despite the major cracks forming the fragments could not get enough time to coalesce and create macrocracks. These microstructures eventually impact the integrity of the intact rock and reduce its strength. Damage is considered as a scalar parameter, which accounts for the creation of flaws and microstructures in the rock, deteriorating its elasticity modulus. The stress waves and their interactions are the parameters that control damage around blastholes. In this study, using LS-DYNA numerical code, the effect of initiation timing on blast-induced rock damage and fragmentation is investigated. The results of the numerical models reveal the importance of the delays in damage as well as fragment size distribution. Delayed initiation provides enough timing for the cracks to grow, which preconditions the surrounding rock for the neighboring blasthole. The interaction between the stress waves resulting from the detonation of neighboring blastholes plays an important role in damage and fragmentation analysis. The optimum delay time can be obtained by considering the rise time and the duration of the stress pulse, the P and S wave travel times in the host rock, and the crack propagation time within the rock burden.
机译:爆破的岩石碎片是硬岩挖掘应用中岩石破损最有效的方式。片段化以及爆炸产生的片段的性质具有重要关注,因为磨机的能量消耗受到了极大的影响。爆破的动态加载产生了主体岩石中的无数数量的微裂纹,尽管形成了碎片的主要裂缝,但碎片无法获得足够的时间来合并并创造MacRecracks。这些微观结构最终影响完整岩石的完整性并降低其强度。损坏被认为是标量参数,其考虑了岩石中的缺陷和微观结构,使其弹性模量劣化。应力波及其相互作用是控制血液损坏的参数。在本研究中,使用LS-DYNA数值代码,研究了启动时机对爆炸诱导的岩石损伤和碎片的影响。数值模型的结果揭示了损坏延迟以及片段大小分布的重要性。延迟启动提供了足够的裂缝的时间来生长,这是邻近北博塞洛的周围岩石。由邻近苯脱石的爆炸产生的应力波之间的相互作用在损伤和碎片分析中起着重要作用。通过考虑主岩中的应力脉冲的上升时间和持续时间,可以获得最佳延迟时间,以及岩石负担内的裂缝传播时间。

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