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Blasting cumulative damage effects of underground engineering rock mass based on sonic wave measurement

机译:基于声波测量的地下工程岩体爆破累积破坏效应

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The principle of sonic wave measurement was introduced, and cumulative damage effects of underground engineering rock mass under blasting load were studied by in situ test, using RSM-SY5 intelligent sonic wave apparatus. The blasting test was carried out for ten times at some tunnels of Changba Lead-Zinc Mine. The damage depth of surrounding rock caused by old blasting excavation (0.8-1.2 m) was confirmed. The relation between the cumulative damage degree and blast times was obtained. The results show that the sonic velocity decreases gradually with increasing blast times, but the damage degree (D) increases. The damage cumulative law is non-linear. The damage degree caused by blast decreases with increasing distance, and damage effects become indistinct. The blasting damage of rock mass is anisotropic. The damage degree of rock mass within charging range is maximal. And the more the charge is, the more severe the damage degree of rock mass is. The test results provide references for researches of mechanical parameters of rock mass and dynamic stability analysis of underground chambers.
机译:介绍了声波测量的原理,利用RSM-SY5智能声波仪通过现场试验研究了爆破荷载作用下地下工程岩体的累积破坏效果。在长坝铅锌矿的一些隧道进行了爆破试验十次。证实了旧爆破开挖对围岩的破坏深度(0.8-1.2 m)。得到了累积损伤程度与爆炸时间之间的关系。结果表明,声波速度随着爆炸时间的增加而逐渐减小,但损伤程度(D)增大。损伤累积定律是非线性的。爆炸引起的破坏程度随距离的增加而减小,破坏效果不明显。岩体的爆破破坏是各向异性的。装料范围内的岩体破坏程度最大。电荷越多,岩体的破坏程度就越严重。试验结果为岩体力学参数研究和地下室动力稳定性分析提供参考。

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