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软岩巷道失稳及高强全锚注支护分析 被引量:1
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作者 董明明 《山西冶金》 CAS 2019年第4期135-137,共3页
软岩巷道作为井下深部回采中十分常见的一种巷道形式,如何实现对其围岩稳定性的有效控制对矿井生产安全开展意义重大。文章以此为着手点,针对软岩巷道失稳及高强全锚注支护开展探究。笔者结合具体工程实际,文中在分析软岩巷道失稳原因... 软岩巷道作为井下深部回采中十分常见的一种巷道形式,如何实现对其围岩稳定性的有效控制对矿井生产安全开展意义重大。文章以此为着手点,针对软岩巷道失稳及高强全锚注支护开展探究。笔者结合具体工程实际,文中在分析软岩巷道失稳原因的基础上,对巷道围岩支护设计原则作出总结,并基于此提出高强全锚注支护工艺,希望能够为其他矿井相似工程的开展提供借鉴与参考。 展开更多
关键词 矿井 软岩巷道 巷道失稳 高强支护
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深井软岩巷道高强全锚注支护机理与技术应用 被引量:16
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作者 蒋敬平 黄庆显 +1 位作者 魏夕合 杨战标 《煤矿安全》 CAS 北大核心 2016年第10期33-35,共3页
针对深井巷道围岩脆延性转化及地质(工程)软岩大变形力学特性,通过力学试验、实测检验等综合研究方法,对高强锚注支护作用机理进行了初步探索。研究表明:高强全锚注支护实现了由传统端锚向全锚的转变,支护系统刚度提高了5.8倍,抗剪... 针对深井巷道围岩脆延性转化及地质(工程)软岩大变形力学特性,通过力学试验、实测检验等综合研究方法,对高强锚注支护作用机理进行了初步探索。研究表明:高强全锚注支护实现了由传统端锚向全锚的转变,支护系统刚度提高了5.8倍,抗剪强度提高了0.4~0.5倍,扩大了支护结构的有效承载范围,改善了围岩应力状态,提高了围岩自承能力;平煤一矿千米埋深回风上山试验段采用高强中空注浆锚杆、高强中空注浆锚索进行高强全锚注支护,巷道两帮移近量5 mm,顶板最大变形量600 mm,相比原支护,显著降低了围岩变形量,简单修复即可实现巷道持久稳定。 展开更多
关键词 深井软岩 大变形 高强锚注支护 巷道支护 抗剪强度
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深井软弱围岩巷道变形破坏机理及支护技术研究 被引量:12
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作者 王竹春 李军伟 《煤炭科学技术》 CAS 北大核心 2017年第4期8-13,共6页
为解决赵楼煤矿七采区辅助运输巷变形严重的难题,通过现场监测分析原支护方案条件下软弱围岩变形破坏机制,围岩易膨胀、软化,承载能力低,巷道所处应力场复杂,支护材料支护潜力无法有效发挥,巷道断面尺寸大是巷道变形破坏的主要原因。提... 为解决赵楼煤矿七采区辅助运输巷变形严重的难题,通过现场监测分析原支护方案条件下软弱围岩变形破坏机制,围岩易膨胀、软化,承载能力低,巷道所处应力场复杂,支护材料支护潜力无法有效发挥,巷道断面尺寸大是巷道变形破坏的主要原因。提出增加顶板护表面积、注浆加固、施加高预紧力、关键部位加强支护等具体措施,并实施了高强锚注支护试验方案。结果表明:高强注浆锚杆、锚索受力均呈现出"顶板>右帮>左帮"的趋势;顶板、底板、右帮和左帮变形量比原支护方案分别降低了79.7%、81.9%、80.0%和77.8%,说明高强锚注支护方案能够有效控制围岩变形。 展开更多
关键词 软弱围岩 变形破坏机制 高强锚注支护 围岩稳定性
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Failure mechanism of bolting support and high-strength bolt-grouting technology for deep and soft surrounding rock with high stress 被引量:16
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作者 李术才 王洪涛 +5 位作者 王琦 江贝 王富奇 郭念波 刘文江 任尧喜 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期440-448,共9页
In deep underground mining, the surrounding rocks are very soft with high stress. Their deformation and destruction are serious, and frequent failures occur on the bolt support. The failure mechanism of bolt support i... In deep underground mining, the surrounding rocks are very soft with high stress. Their deformation and destruction are serious, and frequent failures occur on the bolt support. The failure mechanism of bolt support is proposed to solve these problems. A calculation theory is established on the bond strength of the interface between the anchoring agent and surrounding rocks. An analysis is made on the influence law of different mechanical parameters of surrounding rocks on the interfacial bond strength. Based on the research, a new high-strength bolt-grouting technology is developed and applied on site. Besides, some helpful engineering suggestions and measures are proposed. The research shows that the serious deformation and failure, and the lower bond strength are the major factors causing frequent failures of bolt support. So, the bolt could not give full play to its supporting potential. It is also shown that as the integrity, strength, interface dilatancy and stress of surrounding rocks are improved, the bond strength will increase. So, the anchoring force on surrounding rocks can be effectively improved by employing an anchoring agent with high sand content, mechanical anchoring means, or grouting reinforcement. The new technology has advantages in a high strength, imposing pre-tightening force, and giving full play to the bolt supporting potential. Hence, it can improve the control effect on surrounding rocks. All these could be helpful references for the design of bolt support in deep underground mines. 展开更多
关键词 high stress soft rock bolting support interface dilation failure mechanism high strength bolt-grouting technology
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