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深部红页岩巷道的位移变形分析及支护 被引量:2
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作者 宋仕毅 李寿山 +3 位作者 吴强 黎元裴 吴西富 曹仁贵 《现代矿业》 CAS 2012年第3期32-33,共2页
马路坪矿深部红页岩巷道开挖后在没有支护的情况下,围岩以垂直位移为主,采用新型可伸缩式砂浆锚杆和底角锚杆支护后,有效地抑制了红页岩巷道的水平位移量和垂直位移量,解决了该矿红页岩深部巷道的片帮及冒顶问题。
关键词 深部红页岩巷道 水平位移 垂直位移 锚杆支护
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马路坪矿深部红页岩底鼓形成机理研究
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作者 黎文斐 黄仁雄 +2 位作者 柏明忠 郭加宏 陈靖军 《化工矿物与加工》 CAS 北大核心 2012年第6期34-35,共2页
针对马路坪矿深部红页岩巷道底板出现的底鼓问题,对深部软岩巷道的底鼓成因和机理进行了分析,从而得出随着巷道掘进深度的增加,巷道底板弹性区的应力增长梯度及其静水压力增长梯度呈线性关系,与巷道底板的塑性区呈现近似线性相关关系,... 针对马路坪矿深部红页岩巷道底板出现的底鼓问题,对深部软岩巷道的底鼓成因和机理进行了分析,从而得出随着巷道掘进深度的增加,巷道底板弹性区的应力增长梯度及其静水压力增长梯度呈线性关系,与巷道底板的塑性区呈现近似线性相关关系,研究结果为马路坪矿深部红页岩软岩巷道底鼓的防治提供了理论依据。 展开更多
关键词 深部红页岩 巷道底鼓 机理研究
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马路坪矿红页岩巷道位移监测变形规律分析 被引量:2
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作者 吴强 金宇松 +3 位作者 黄吉勇 黎文裴 吴西富 曹仁贵 《化工矿物与加工》 CAS 北大核心 2012年第7期26-27,共2页
介绍了马路坪矿深部红页岩巷道掘进后位移变形的3个阶段,第1阶段在掘进后第7~8d左右为底鼓位移速率急增,此时为最大值25.6mm/d;第2阶段在掘进后1个月左右,底鼓位移速率下降阶段,第3阶段为常速底鼓阶段,研究分析结果为巷道支护提供了理... 介绍了马路坪矿深部红页岩巷道掘进后位移变形的3个阶段,第1阶段在掘进后第7~8d左右为底鼓位移速率急增,此时为最大值25.6mm/d;第2阶段在掘进后1个月左右,底鼓位移速率下降阶段,第3阶段为常速底鼓阶段,研究分析结果为巷道支护提供了理论依据。 展开更多
关键词 深部红页岩 位移变形 位移监测
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Geotechnical characterization of red shale and its indication for ground control in deep underground mining 被引量:6
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作者 WANG Dong-yi LI Xi-bing +3 位作者 PENG Kang MA Chun-de ZHANG Zhen-yu LIU Xiao-qian 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第12期2979-2991,共13页
Geotechnical properties of red shale encountered in deep underground mining were characterized on both laboratory and field scale to reveal its unfavorably in geoenvironment.Its constituents,microstructure,strength pr... Geotechnical properties of red shale encountered in deep underground mining were characterized on both laboratory and field scale to reveal its unfavorably in geoenvironment.Its constituents,microstructure,strength properties and water-weakening properties were investigated.In situ stress environment and mining-induced fractured damage zone after excavation were studied to reveal the instability mechanism.The results show that red shale contains swelling and loose clayey minerals as interstitial filling material,producing low shear strength of microstructure and making it vulnerable to water.Macroscopically,a U-shaped curve of uniaxial compressive strength(UCS)exists with the increase of the angle between macro weakness plane and the horizon.However,its tensile strength reduced monotonically with this angle.While immersed in water for72h,its UCS reduced by91.9%comparing to the natural state.Field sonic tests reveal that an asymmetrical geometrical profile of fractured damage zone of gateroad was identified due to geological bedding plane and detailed gateroad layout with regards to the direction of major principle stress.Therefore,red shale is a kind of engineering soft rock.For ground control in underground mining or similar applications,water inflow within several hours of excavation must strictly be prevented and energy adsorbing rock bolt is recommended,especially in large deformation part of gateroad. 展开更多
关键词 red shale soft rock deep mining geotechnical characterization ground control
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