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Investigating the Effect of Rock Bridge on the Stability of Locked Section Slopes by the Direct Shear Test and Acoustic Emission Technique

机译:通过直接剪切试验和声发射技术研究岩桥对锁定断面边坡稳定性的影响

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摘要

As a portion of intact rock separating joint surfaces, rock bridge plays a significant role in the stability of rock slopes. This paper aims to investigate the effect of different rock bridges on the mechanical properties and failure mode of rock slope by means of the direct shear test and acoustic emission technique. Field conditions were simulated in direct shear tests which were carried out on specimens with rock bridges at different continuity rates, normal stress, arrangements, and joint angles. Experimental results indicate that the strength of specimens is controlled by the rock bridge and the structural plane. The rock bridge contributes to the strength of the specimen, while the through plane weakens the strength of the specimen. The increase of normal stress can weaken the stress concentration near the tip of the rock bridge and improve the shear resistance of the specimen. The different arrangement of rock bridge has little effect on the normal displacement of the specimen, and has a great influence on the shear strength. The shear capacity of the specimen is related to the angle of the crack, and the angle of the crack is approximately proportional to the peak shear strength. For the specimens with different joint occurrence, the mode of crack propagation at the initial stage is basically the same, and the specimen is finally damaged due to the generation of through cracks in the core area of rock bridge. The instantaneous release of the huge energy generated during the experiment along the shear direction is the root cause of the sudden failure of the rock bridge. The formation, aggregation, and transfixion process of rock bridge is of concern and has been experimentally investigated in this paper for the prevention and control of the locked section rock slope with sudden disasters.
机译:作为完整的岩石分隔接缝表面的一部分,岩桥在岩石边坡的稳定性中起着重要作用。本文旨在通过直接剪切试验和声发射技术研究不同岩石桥梁对岩石边坡的力学性能和破坏模式的影响。在直接剪切试验中模拟了现场条件,该试验在带有岩石桥梁的试样上以不同的连续率,法向应力,布置和接缝角进行了测试。实验结果表明,试样的强度受岩桥和结构面的控制。岩石桥有助于试样的强度,而贯通平面会削弱试样的强度。正应力的增加可以削弱岩桥尖端附近的应力集中,并提高试样的抗剪强度。岩桥的不同布置对试样的法向位移影响很小,对剪切强度的影响很大。试样的剪切能力与裂缝的角度有关,裂缝的角度大约与峰值剪切强度成正比。对于具有不同节理发生的试样,初始阶段的裂纹扩展方式基本相同,最终由于岩桥核心区域贯通裂纹的产生,最终破坏了试样。实验过程中沿剪切方向瞬时释放的巨大能量的瞬时释放是岩桥突然破坏的根本原因。岩石桥梁的形成,聚集和贯通过程受到关注,并已通过实验研究,以预防和控制突发灾害的锁定断面岩质边坡。

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