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Failure mechanism of bolting support and high-strength bolt-grouting technology for deep and soft surrounding rock with high stress

机译:深部高应力软岩围岩锚固支护破坏机理及高强锚固技术

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摘要

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.
机译:在深层地下开采中,周围的岩石非常软且应力很大。它们的变形和破坏很严重,并且螺栓支撑经常发生故障。为了解决这些问题,提出了螺栓支撑的失效机理。建立了锚固剂与围岩界面粘结强度的计算理论。分析了围岩不同力学参数对界面结合强度的影响规律。在这项研究的基础上,开发了一种新的高强度螺栓灌浆技术,并在现场进行了应用。此外,提出了一些有用的工程建议和措施。研究表明,严重的变形和破坏以及较低的粘结强度是导致螺栓支撑频繁破坏的主要因素。因此,螺栓无法充分发挥其支撑潜力。还表明,随着围岩的完整性,强度,界面膨胀性和应力的改善,粘结强度将增加。因此,通过使用含砂量高的锚固剂,机械锚固手段或灌浆加固,可以有效地提高对围岩的锚固力。新技术具有强度高,施加预紧力并充分发挥螺栓支撑潜力的优点。因此,可以改善对围岩的控制效果。所有这些都可以为地下深部矿井的锚杆支护设计提供有用的参考。

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