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Effect of bolting on roadway support in extremely weak rock

机译:极弱岩石中锚固对巷道支护的影响

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摘要

In mine roadway support operations, floor bolting not only played a role in floor heave control, but also in reinforcing roof and its two sides. Correspondingly, bolting of roof and two sides also played a part in floor heave control. To quantify the effect of such bolting, based on roadway support in extremely weak rock, three physical models were produced and tested in laboratory. Through comparison of their displacements in three physical simulation experiments, the reinforcing effect of bolting in extremely weak rock roadways was quantified. Reinforcing coefficients was defined as displacement ratio between original support and new support regime. Results indicated that the reinforcing coefficients, for bolting of roof and its two sides, on floor, two sides, and roof reached 2.18, 3.56, and 1.81 respectively. The reinforcing coefficients for floor bolting on floor, two sides, and roof reached 3.06, 2.34, and 1.39 respectively. So in this extremely weak rock, the surrounding rock should be considered as an integral structure in any support operation: this allows for better local strength improvement, and provided future design guidance.
机译:在矿井巷道支护作业中,地脚螺栓不仅在控制地面起伏中起着作用,而且在加固顶板及其两侧方面也起着作用。相应地,顶板和两侧的锚固也起到了地面起伏控制的作用。为了量化这种锚固的效果,基于极弱岩石中的巷道支撑,制作了三种物理模型并在实验室中进行了测试。通过在三个物理模拟实验中比较它们的位移,量化了极弱岩石巷道中锚杆的加固效果。加固系数定义为原始支撑与新支撑体系之间的位移比。结果表明,顶板及其两侧锚固的楼板,两侧和顶板的加固系数分别达到2.18、3.56和1.81。地板,两侧和屋顶上的地板锚固加固系数分别达到3.06、2.34和1.39。因此,在这种极弱的岩石中,在任何支护作业中都应将围岩视为整体结构:这样可以更好地改善局部强度,并为将来的设计提供指导。

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