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Optimization research of structural parameters in non-pillar sublevel caving method with large structural parameters

机译:大型结构参数非柱子悬浮法结构参数的优化研究

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The non-pillar sublevel caving method with large structural parameters used in Mao Gong Iron Mine is of high rate of dilution and loss, and the ore recovery rate is less than 50%. Aiming at this problem, this paper analyzes the influence mechanism of the caving step on the mining index by means of the matching relationship between the shape of caved ore body and the drawn-out ore body, then through the physical simulation experiment in laboratory, the mining index such as the volume of pure ore drawing, ore recovery ratio and rock mixing ratio are studied under different caving step. The results show that the mining index under caving step of two row of blast hole is better than that under caving step of one row of blast hole. The research has guided significance for production of the mine.
机译:具有大型结构参数的非柱子簧下塌陷方法具有毛锣铁矿的大型结构参数,具有高稀释度和损失率高,矿石恢复率小于50%。旨在解决这个问题,本文通过塌陷矿体和拉伸矿体形状与拉伸矿体的形状与实验室的物理仿真实验之间的匹配关系分析了洞穴阶段对采矿指数的影响机理。在不同的塌陷步骤下研究了诸如纯矿拉伸,矿石回收率和岩石混合比的挖掘指数。结果表明,两排爆破孔的塌陷步骤下的采矿指数比一排爆破孔的塌陷步骤更好。该研究具有导致矿井生产的重要性。

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