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岩石锚杆加固对非贯通节理面抗剪性能的影响

Influence of rock bolt reinforcement on shear behaviour of a nonpersistent joint plane.

作者信息

Xue Hongyun, Yang Xuxu, Kulatilake Pinnaduwa H S W, Qu Guanglin

机构信息

School of Civil Engineering and Architectures, Shandong University of Science and Technology, Qingdao, 266590, People's Republic of China.

Department of Mining and Geological Engineering, The University of Arizona, Tucson, AZ, 85721, USA.

出版信息

Sci Rep. 2024 Dec 28;14(1):31465. doi: 10.1038/s41598-024-83183-z.

Abstract

The impact of rock bolts on the mechanical behavior of nonpersistent joints, including the intricate interactions between the joints, rock bridges, and rock bolts, has received limited investigation despite their effectiveness in reinforcing rock mass discontinuities. In order to tackle this issue, a variety of normal stresses were applied during direct shear tests conducted on artificial rock-like specimens with nonpersistent joints, both bolted and unbolted. Meanwhile, to measure the deformation in the rock bridge and joint plane region, a set of strain gauges were implemented. The findings indicated that the local shear deformation-shear displacement curves, whether with or without rock bolts, can be categorized into five distinct stages. Application of the rock bolts on the nonpersistent joint plane resulted in making the following two important statements: (a) The rock bolts delay the shear stress transmission along the joint plane from the joint parts to the rock bridge area; (b) The rock bolts limit the dilatancy occurring in both the joint parts and at the rock bridge area. Furthermore, the shear displacement of the bolted nonpersistent joint specimen at the peak shear strength was found to be greater than that of the unbolted nonpersistent joint specimen indicating protection of the rock bridge by the rock bolts. Whether bolted or unbolted, the stiffness values seem to be the same for the nonpersistent joint plane for a selected normal stress; this observation is significantly different from that observed for the persistent joint plane.

摘要

尽管岩石锚杆在加固岩体不连续面方面很有效,但锚杆对非贯通节理力学行为的影响,包括节理、岩桥和锚杆之间复杂的相互作用,却很少得到研究。为了解决这个问题,在对含非贯通节理的人工类岩石试件进行直剪试验时,施加了多种法向应力,试件分有锚杆和无锚杆两种情况。同时,为了测量岩桥和节理面区域的变形,布置了一组应变片。研究结果表明,无论有无锚杆,局部剪切变形-剪切位移曲线都可分为五个不同阶段。在非贯通节理面上施加锚杆有以下两个重要结论:(a) 锚杆延缓了沿节理面从节理部分到岩桥区域的剪应力传递;(b) 锚杆限制了节理部分和岩桥区域出现的剪胀现象。此外,发现有锚杆的非贯通节理试件在峰值抗剪强度时的剪切位移大于无锚杆的非贯通节理试件,这表明锚杆对岩桥起到了保护作用。对于选定的法向应力,无论有无锚杆,非贯通节理面的刚度值似乎相同;这一观察结果与贯通节理面的情况有显著差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d2ef/11682070/8a5e1c5340ce/41598_2024_83183_Fig1_HTML.jpg

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