...
首页> 外文期刊>Rock Mechanics and Rock Engineering >Experimental Investigation of the Influence of Confining Stress on Hard Rock Fragmentation Using a Conical Pick
【24h】

Experimental Investigation of the Influence of Confining Stress on Hard Rock Fragmentation Using a Conical Pick

机译:用锥形挑选对压力压力对硬岩碎片影响的实验研究

获取原文
获取原文并翻译 | 示例
           

摘要

High geostress is a prominent condition in deep excavations and affects the cuttability of deep hard rock. This study aims to determine the influence of confining stress on hard rock fragmentation as applied by a conical pick. Using a true triaxial test apparatus, static and coupled static and dynamic loadings from pick forces were applied to end faces of cubic rock specimens to break them under biaxial, uniaxial and stress-free confining stress conditions. The cuttability indices (peak pick force, insertion depth and disturbance duration), failure patterns and fragment sizes were measured and compared to estimate the effects of confining stress. The results show that the rock cuttabilities decreased in order from rock breakages under stress-free conditions to uniaxial confining stress and then to biaxial confining stress. Under biaxial confining stress, only flake-shaped fragments were stripped from the rock surfaces under the requirements of large pick forces or disturbance durations. As the level of uniaxial confining stress increased, the peak pick force and the insertion depth initially increased and then decreased, and the failure patterns varied from splitting to partial splitting and then to rock bursts with decreasing average fragment sizes. Rock bursts will occur under elastic compression via ultra-high uniaxial confining stresses. There are two critical uniaxial confining stress levels, namely stress values at which peak pick forces begin to decrease and improve rock cuttability, and those at which rock bursts initially occur and cutting safety decreases. In particular, hard rock is easiest to split safely and efficiently under stress-free conditions. Moreover, coupled static preloading and dynamic disturbance can increase the efficiency of rock fragmentation with increasing preloading levels and disturbance amplitudes. The concluding remarks confirm hard rock cuttability using conical pick, which can improve the applicability of mechanical excavation in deep hard rock masses.
机译:高地距离是深度挖掘的突出条件,影响深硬岩的可切割性。本研究旨在确定压力对锥形挑选的硬岩碎片的影响。使用真正的三轴试验装置,从拾取力的静电和耦合静态和动态载荷施加到立方体岩石标本的端面,以在双轴,单轴和无应力限制应激条件下打破它们。测量可切型指数(峰值拾取力,插入深度和干扰持续时间),并进行比较,以估计限制应力的影响。结果表明,从无应力条件下的岩石破损到单轴限制应力下的岩石破损,岩块可减少率下降,然后对双轴限制应激。在双轴限制应力下,仅在大镐力或扰动持续时间的要求下从岩石表面中剥离片状碎片。随着单轴限制压力的水平增加,峰值拾取力和插入深度最初增加然后减小,并且失效图案变化与分裂到部分分裂,然后以降低平均片段尺寸的摇滚突发。通过超高的单轴限制应力,岩石爆裂将在弹性压缩下发生。存在两个临界单轴限制应力水平,即峰值拾取力开始降低和改善岩石可切割性的应力值,以及最初发生岩石突发和切割安全性的那些。特别是,硬岩最容易在无应力条件下安全有效地分裂。此外,耦合静态预加载和动态扰动可以通过增加预加载水平和干扰幅度来提高岩石碎片的效率。结论备注使用锥形挑选确认了硬岩可切割性,这可以提高机械挖掘在深硬岩质量中的适用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号