Experimental investigation of the shear behavior of soft-hard joints under constant normal stress

IF 3.7 2区 工程技术 Q3 ENGINEERING, ENVIRONMENTAL Bulletin of Engineering Geology and the Environment Pub Date : 2024-12-17 DOI:10.1007/s10064-024-04039-4
Shengpeng Hao, Ya’nan Liu, Zhenyu Zhang, Wenyu Xu
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Abstract

The shear behavior of soft-hard joints is important in the stability analysis of rock structures. However, available experimental studies on the shear behavior of soft-hard joints are relatively limited. In this study, a series of direct shear tests were conducted to evaluate the shear stress-displacement curves and the dilatancy of soft-hard joints with different joint roughness coefficient JRC, wall strength ratios, and normal stresses. Acoustic emission technique was applied to investigate the mesoscopic damage evolution of soft-hard joints with shear displacement. Results showed that the shear stress-displacement curves of soft-hard joints were divided into elastic, damage, softening, and residual stages. Peak and residual shear strengths increased with JRC, wall strength ratio, and normal stress. The peak shear displacement increased with wall strength ratio and normal stress, while it decreased with JRC. The damage coefficient increased with JRC, wall strength ratio, and normal stress, and the soft wall surface exhibited a higher damage coefficient compared to the hard wall. The damage spots on the soft wall surface progressively enlarged with wall strength ratio and normal stress. The percentage of tensile cracks was typically higher than 50%. The proposed empirical model based on Barton model and Asadollahi model could accurately predicted the entire shear stress-displacement curves of soft-hard joints obtained from direct shear tests. The findings in this study should be beneficial for estimating the shear response of soft-hard joints under constant normal stress.

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恒定法向应力下软硬接缝剪切行为的实验研究
软硬节理的剪切特性在岩石结构稳定性分析中具有重要意义。然而,现有的关于软硬节理抗剪性能的实验研究相对有限。本研究通过一系列直剪试验,对不同节理粗糙系数JRC、墙体强度比、法向应力条件下的软-硬节理剪应力-位移曲线及剪胀特性进行了评价。采用声发射技术研究了剪切位移作用下软硬接头的细观损伤演化过程。结果表明:软硬接头剪切应力-位移曲线分为弹性阶段、损伤阶段、软化阶段和残余阶段;峰值和残余抗剪强度随JRC、墙体强度比和正应力的增大而增大。峰值剪切位移随墙体强度比和正应力增大而增大,随JRC增大而减小。损伤系数随JRC、壁强比和法向应力的增大而增大,且软壁表面的损伤系数高于硬壁。随着壁强比和法向应力的增大,软壁表面损伤斑逐渐增大。拉伸裂纹的百分比通常高于50%。基于Barton模型和Asadollahi模型所提出的经验模型能够较准确地预测直剪试验所得软硬节理的整个剪应力-位移曲线。本研究结果将有助于估计在恒定法向应力下软硬关节的剪切响应。
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来源期刊
Bulletin of Engineering Geology and the Environment
Bulletin of Engineering Geology and the Environment 工程技术-地球科学综合
CiteScore
7.10
自引率
11.90%
发文量
445
审稿时长
4.1 months
期刊介绍: Engineering geology is defined in the statutes of the IAEG as the science devoted to the investigation, study and solution of engineering and environmental problems which may arise as the result of the interaction between geology and the works or activities of man, as well as of the prediction of and development of measures for the prevention or remediation of geological hazards. Engineering geology embraces: • the applications/implications of the geomorphology, structural geology, and hydrogeological conditions of geological formations; • the characterisation of the mineralogical, physico-geomechanical, chemical and hydraulic properties of all earth materials involved in construction, resource recovery and environmental change; • the assessment of the mechanical and hydrological behaviour of soil and rock masses; • the prediction of changes to the above properties with time; • the determination of the parameters to be considered in the stability analysis of engineering works and earth masses.
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