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Experimental Investigation of Cuttability Improvement for Hard Rock Fragmentation Using Conical Cutter

机译:锥形切割机硬岩碎片可切割性改善的实验研究

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摘要

Stress conditions and preflaws are prominent conditions influencing the cuttability of deep hard rock. This study aims to investigate the cuttability of intact, prefractured, and drilled rocks under biaxial confining stress, uniaxial confining stress, and stress-free conditions using a conical cutter in rock fragmentation tests on true triaxial loading apparatus. Peak cutter force and penetration depth at rock initial fracture and final failure of the rock specimen were used to reflect rock cuttability. The results show that the rock cuttability increases with stress in one direction decreasing under biaxial confining stresses, and presents a decreasing trend followed by an initial increase as uniaxial confining stress increases. The prefractures and boreholes in rock can further improve the rock cuttability, compared with intact rock. A series of cuttability improvement measures were proposed to provide a suitable condition for the application of nonexplosive mechanized mining in hard rock. Finally, comparative field tests were performed on a single-face entryway and a peninsula-shaped pillar, in which the mean value of cutting efficiency increased from 32.6 to 107.7 t/h, and the dust production and cutter wearout failure reduced significantly.
机译:压力条件和预拉力是影响深硬岩可切割性的突出条件。本研究旨在探讨在真正的三轴装载装置上岩石碎片试验中的双轴限制应力,单轴限制应力和无应力条件下的完整,预先处理和钻孔岩石的可切割性,使用锥形切割器。岩石初始断裂和岩石标本的最终失效的峰值切割力和渗透深度反映岩石可切割性。结果表明,在双轴限制应力下,岩石可切割性随着一个方向上的应力而增加,并且随着单轴限制应力增加,呈下降趋势随之而来。与完整的岩石相比,岩石中的预裂纹和钻孔可以进一步提高岩石切割性。提出了一系列可切屑性改善措施,以提供适当的条件,以在硬岩中应用非膨胀机械化开采。最后,对比较场测试进行了在单面入口通道和半岛形柱上进行,其中切割效率的平均值从32.6增加到107.7吨/小时,并且粉尘生产和刀具磨损失效显着降低。

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