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Buckling failure of highly-stressed hard rocks surrounding deep underground openings and confining effects of backfilling material

机译:地下深孔周围高应力硬岩的屈曲破坏及回填材料的围岩作用

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The buckling failure of highly-stressed hard rocks surrounding deep underground openings is analyzed in this paper. The effects of the eccentricity of maximum tangential stress and the radial stress gradient are considered in the analysis. The maximum lateral displacement and the maximum moment on the rock slabs are calculated by using vector superposition method. It shows that the slenderness, the eccentricity, the elastic modulus of the slabs and the loading stress play important roles on the buckling failure of rock slabs. The confining pressure provided by filling material can prove adequate to control buckling failure under certain loading conditions. The way to obtain the basic parameters in buckling analysis is also discussed in the paper. According to the buckling theory, a case study was discussed at the Maluping Mine in the Guizhou Kailin Group, China. By measuring the in-situ stresses, it was found that the maximum principal stress is as high as 35MPa at the Level+700m and buckling failure occurred in the surrounding rock masses. By experimental studies on the uniaxial compressive strength of the phosphorus gypsum cemented with Portland cement and fly ash, the required strength and the economic composition of backfilling material was determined. It was found that the confining pressure with 1.5-2.1MPa provided by filling material is sufficient to stop buckling and slabbing failure in the surrounding rock masses. It can realize the stability of the highly-stressed underground stopes.
机译:本文分析了深部地下洞口周围高应力硬岩的屈曲破坏。分析中考虑了最大切向应力的偏心率和径向应力梯度的影响。采用矢量叠加法计算了岩石平板的最大横向位移和最大弯矩。结果表明,板的伸长率,偏心率,弹性模量和加载应力对板的屈曲破坏有重要作用。填充材料提供的限制压力可以证明足以控制某些负载条件下的屈曲破坏。本文还讨论了屈曲分析中基本参数的获取方法。根据屈曲理论,在中国凯林集团的马鲁坪矿进行了案例研究。通过测量现场应力,发现在Level + 700m处,最大主应力高达35MPa,并且在围岩中发生了屈曲破坏。通过对硅酸盐水泥和粉煤灰胶结的磷石膏的单轴抗压强度的试验研究,确定了回填材料的要求强度和经济性。发现填充材料提供的1.5-2.1MPa的围压足以阻止围岩中的屈曲和平板破坏。它可以实现高应力地下采场的稳定性。

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