Fenghai Yu, Bo Sun, Qingduo Wang, Ping Fang, Tao Zhang, Jianchong Chen, Xin Zhao, Dehe Zhu
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引用次数: 0
摘要
预紧力的大小是衡量锚杆主动支护效果的重要指标,也是影响隧道围岩稳定性的重要因素之一。因此,在实际工程中,建立预紧扭矩与预紧力之间的关系至关重要。然而,目前该领域的研究还存在一定的局限性。本文以中国西部某矿山为工程背景,首先分析了围岩变形和破坏的影响因素,建立了锚杆支护预紧结构的力学模型,并基于假设条件得出了预紧力矩与预紧力之间的定量关系。最后,提出了锚杆支护的损失效应,并修正了工程应用中的预紧损失系数。研究结果表明,由于受到深厚软煤层的影响,锚杆支护的实际预紧力较小,导致煤柱在开采应力作用下失效。围岩对预紧力的损失效应用系数 k 表示,计算得出该系数的修正值为 0.19∼0.43。根据修正后的预紧力矩与预紧力关系,11307 回风巷道实际预紧力矩为 300 Nm,有效控制了围岩变形和破坏,煤柱位移小于 120 mm。
Study on Pretightening Loss Effect of Bolt Support in Deep Soft Rock Roadway
The magnitude of pretension force serves as an important indicator of the effectiveness of anchor bolt active support and is one of the significant factors influencing the stability of tunnel surrounding rock. Therefore, in practical engineering, it is crucial to establish the relationship between pretension torque and pretension force. However, current research in this field has some limitations. With a specific mine in western China as the engineering background, this paper first analyzed the influence factors of surrounding rock deformation and failure, established a mechanical model for pretension structure of anchor bolt support, and derived the quantitative relationship between pretension torque and pretension force based on hypothetical conditions. Finally, it proposed the loss effect of anchor bolt support and modified the pretightening loss coefficient for engineering application. The research results show that the actual pretightening force of anchor support is lower due to the influence of deep soft coal seam, which leads to failure of coal pillar under mining stress. The loss effect of surrounding rock on pretightening force was represented by a coefficient k, and the modified value of the coefficient was calculated as 0.19∼0.43. By applying the modified relationship between pretightening torque and pretightening force, it was found that the actual pretightening torque of 300 Nm applied to 11307 return air roadway effectively controlled surrounding rock deformation and failure, with coal pillar displacement less than 120 mm.
期刊介绍:
Shock and Vibration publishes papers on all aspects of shock and vibration, especially in relation to civil, mechanical and aerospace engineering applications, as well as transport, materials and geoscience. Papers may be theoretical or experimental, and either fundamental or highly applied.