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深井软岩注浆加固支护技术应用研究
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作者 薛峁峁 《山西化工》 CAS 2024年第6期183-185,共3页
本文以深井生产工作为例展开分析,结合设计情况分析巷道变形破坏原因,采用理论计算和数值模拟相结合的方法,研究巷道围岩应力分布与变形破坏特征等,提出了采用注浆加固支护技术控制巷道围岩变形破坏的相关方法,并对巷道加固后的稳定性... 本文以深井生产工作为例展开分析,结合设计情况分析巷道变形破坏原因,采用理论计算和数值模拟相结合的方法,研究巷道围岩应力分布与变形破坏特征等,提出了采用注浆加固支护技术控制巷道围岩变形破坏的相关方法,并对巷道加固后的稳定性进行了监测。通过研究表明得出,采用注浆加固支护技术能有效控制巷道变形破坏,保证了巷道的稳定性和安全性。 展开更多
关键词 煤矿开采 深井 软岩注浆 加固
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软岩注浆力学改性试验研究 被引量:3
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作者 刘斌 王梅 《煤炭技术》 北大核心 2014年第8期88-90,共3页
以注浆理论研究为指导,提出了一种新型注浆材料并阐述软岩力学改性原理,对软岩注浆前后采用工程实测及显微CT扫描试验的方法,分别从宏观、微观的角度并结合工程实践诠释软岩力学改性成效。
关键词 软岩注浆 力学改性 材料 CT扫描试验 稳定性控制
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让压中空涨壳注浆锚杆在大变形隧道的应用 被引量:1
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作者 田振宇 《山西建筑》 2014年第4期171-173,共3页
在高地应力软岩大变形隧道施工中,采用了让压中空涨壳注浆锚杆技术,通过综合应用钢质涨壳锚固、让压锚具合理滑移、垫板承托受力、中空注浆等技术,改善了系统锚杆参与受力的同时参与让压形变,合理将主动支护与被动支护相结合,有效的抑... 在高地应力软岩大变形隧道施工中,采用了让压中空涨壳注浆锚杆技术,通过综合应用钢质涨壳锚固、让压锚具合理滑移、垫板承托受力、中空注浆等技术,改善了系统锚杆参与受力的同时参与让压形变,合理将主动支护与被动支护相结合,有效的抑制了围岩开挖后收敛及沉降变形过大,控制了变形侵限,确保了施工安全。 展开更多
关键词 让压中空涨壳 高地应力 大变形 锚杆技术
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矿井深部高应力软岩巷道修复技术研究与应用
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作者 申宏栋 焦华喆 +2 位作者 陈新明 张小卫 何宏伟 《中国科技成果》 2024年第4期38-40,共3页
针对平煤六矿-590m水平运输平巷(联络巷)及周围巷道围岩性差、强度低,原支护已经无法承担支护作用的问题,提出了采场覆岩远场及近场压力拱的概念,揭示了采动影响下应力重分布及能量转移规律,研发了新型高强防漏注浆材料和专用注浆泵,形... 针对平煤六矿-590m水平运输平巷(联络巷)及周围巷道围岩性差、强度低,原支护已经无法承担支护作用的问题,提出了采场覆岩远场及近场压力拱的概念,揭示了采动影响下应力重分布及能量转移规律,研发了新型高强防漏注浆材料和专用注浆泵,形成了“一次支护锚网喷+U型钢喷射混凝土+围岩注浆加固”一体化四维耦合支护技术。 展开更多
关键词 巷道:锚网 修复技术 支护技术
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Study on strata control by delay grouting in soft rock roadway 被引量:4
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作者 张农 《Journal of Coal Science & Engineering(China)》 2003年第1期51-56,共6页
The properties of broken rock before and after grouting reinforcement are studied. Testing results show that grouting can raise the residual strength of broken rock, and the broken rockness by grouting can keep the st... The properties of broken rock before and after grouting reinforcement are studied. Testing results show that grouting can raise the residual strength of broken rock, and the broken rockness by grouting can keep the steady supporting capacity within a relatively large deformation range. Revealing of the characteristics of stage deformation and damage process comes to the conclusion that the supporting of soft rock roadway should be analyzed in a dynamic view, and the grouting should be delayed at a proper occasion. Based on the above, the stepwise reinforcement technology characterized by immediate shotcreting, timely bolting and delay grouting is put forward and illustrated with a successful engineering practice. 展开更多
关键词 soft rock roadway delay grouting strata control BOLTING
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Failure mechanism and control technology of water-immersed roadway in high-stress and soft rock in a deep mine 被引量:11
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作者 Yang Renshu Li Yongliang +3 位作者 Guo Dongming Yao Lan Yang Tongmao Li Taotao 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第2期245-252,共8页
Aiming at soft rock ground support issues under conditions of high stress and long-term water immersion, the ground failure mechanism is revealed by taking the deep-water sumps of Jiulong Mine as the engineering backg... Aiming at soft rock ground support issues under conditions of high stress and long-term water immersion, the ground failure mechanism is revealed by taking the deep-water sumps of Jiulong Mine as the engineering background and employing field investigation, tests of rock structure, mechanical properties and mineral composition. The main factors leading to the surrounding rock failure include the high and complex stress state of the water sumps, high-clay content and water-weakened rock, and the unreasonable support design. In this paper, the broken and fractured rock mass near roadway opening is considered as ground small-structure, and deep stable rock mass as ground large-structure. A support technology focusing on cutting off the water, strengthening the small structure of the rock and transferring the large structure of the rock is proposed. The proposed support technology of interconnecting the large and small structures, based on high-strength bolts, high-stiffness shotcrete layer plugging water,strengthening the small structure with deep-hole grouting and shallow-hole grouting, highpretensioned cables tensioned twice to make the large and small structures bearing the pressure evenly,channel-steel and high-pretensioned cables are used to control floor heave. The numerical simulation and field test show that this support system can control the rock deformation of the water sumps and provide technical support to similar roadway support designs. 展开更多
关键词 High stress and soft rock Water immersion Failure mechanism Large and small structures Rework control
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