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首页> 外文期刊>Advances in civil engineering >Bearing Characteristics of Surrounding Rock of Deep Mining Roadway with Full and End Bolt Anchorages: A Comparative Numerical and Experimental Study
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Bearing Characteristics of Surrounding Rock of Deep Mining Roadway with Full and End Bolt Anchorages: A Comparative Numerical and Experimental Study

机译:全螺栓锚固锚杆围岩周围岩石轴承特性:比较数值和实验研究

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The support strength of surrounding rock in deep mining roadways can be significantly improved by replacing the end bolt anchorage with a full one. The support effects of both types of anchorage and the axial stress distribution characteristics in anchored bolt bodies were assessed via the indoor pull-out test, simulated via the FLAC3D software, and verified by field measurements. The stability and variation patterns of the axial force, as well as the evolution law of bearing characteristics of surrounding rock, were analyzed. The results indicate that the polymorphic deformations of deep mining roadway surrounding rock and the bolt support body interact synchronously. The axial force evolution trend in bolt bodies with end anchorage revealed by field tests was consistent with the laboratory test results, in contrast to that of full anchorage. Although stress distribution laws in both sides of the mining roadway were the same for both types of anchorage, the vertical stress peak and damage range of full-anchored surrounding rock slightly exceeded those of the end-anchored one. The anchored area bearing a higher load alleviated the stress concentration of the surrounding rock. Since the deformations in fully and end anchored surrounding rocks increased gradually and sharply, respectively, the full anchorage is more conducive to deformation moving control of deep mining roadway surrounding rock. The research results can provide theoretical guidance for the design and construction of deep mining roadway bolt support.
机译:通过用全部替换端螺栓锚定,可以显着改善深部采矿道路中周围岩石的支撑强度。通过通过FLAC3D软件模拟的室内拔出测试评估了锚固螺栓体中两种类型的锚固和轴向应力分布特性的支持效果,并通过现场测量验证。分析了轴力的稳定性和变化模式,以及周围岩石的轴承特性的演化法。结果表明,围岩围岩和螺栓支撑体的深矿道路的多态性变形同步相互作用。具有田间试验透露的螺栓体中螺栓体的轴向力演化趋势与实验室测试结果一致,与完整的锚固件相反。虽然两种类型的锚道两侧的压力分布法都是相同类型的锚定,但垂直应力峰值和损坏的全锚定周围岩石的损伤范围略微超过了最终锚定的岩石。承载较高载荷的锚定区域减轻了周围岩石的应力浓度。由于完全和端部的变形分别逐渐和锚定逐渐增加,因此完整的锚固更有利于围岩深部采矿道路的变形移动控制。研究结果可以为深矿路线螺栓支撑的设计和构建提供理论指导。

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