Development of an initial normal-loading direct shear tester of discontinuities, with subsequent passive changes in local normal load/stiffness allowable, and an investigation of the shear behaviours of discontinuities

Author:

Hu Shengming12,Gao Jianglin1,Huang Lei3456ORCID,Zhang Zhichao45,Huang Cheng2,Zhang Sheng7,Chen Fang1,Yuan Zhihui2,Su Yu8

Affiliation:

1. Jiangxi Provincial Institute of Water Science, Nanchang, Jiangxi 330029, China

2. National and Provincial Joint Engineering Laboratory for the Hydraulic Engineering Safety and Efficient Utilization of Water Resources of Poyang Lake Basin, Nanchang Institute of Technology, Nanchang, Jiangxi 330099, China

3. Badong National Observation and Research Station of Geohazards, China University of Geosciences, Wuhan, Hubei 430074, China

4. Key Laboratory of Geohazard Prevention of Hilly Mountains, Ministry of Natural Resources, Fuzhou 350002, China

5. Key Laboratory of Geohazard, Fuzhou, Fujian Province 350002, China

6. Engineering Research Center of Rock-Soil Drilling & Excavation and Protection, Ministry of Education, China University of Geosciences, Wuhan, Hubei 430074, China

7. Key Laboratory of Ionic Rare Earth Resources and Environment, Jiangxi College of Applied Technology, Ganzhou, Jiangxi 341000, China

8. School of Infrastructure Engineering, Nanchang University, Nanchang 330031, China

Abstract

A widespread case of discontinuity shearing is found among local shallow rock blocks sliding along non-planer, rough, non-anchored discontinuities, which is characterized by an initial normal load in addition to free subsequent changes in local normal load/stiffness, provoked by shear dilatancy (INL). The existing direct shear apparatuses of rock discontinuities fitted for those cases are rare, and there is a lack of understanding of the shear behaviours of discontinuities under such INL boundary conditions. Here, we develop an INL direct shear tester of discontinuities for shear strength. This tester takes advantage of the direct shear test apparatus modified after the YZ-5 model without a servo-controlled system to permit the accomplishment of those boundary conditions. Shear behaviours of unfilled and infilled discontinuities under INL boundary conditions are investigated. Moreover, the possible influence of clay content on those shear behaviours of infilled discontinuities is clarified. The developed tester made it possible to test the shear performance of the local shallow rock blocks sliding along non-planer, rough, non-anchored discontinuities. This work contributes to a limited body of research on the shear behaviours of discontinuities under those INL boundary conditions. Limitations of this work are also revealed.

Funder

National Natural Science Foundation of China

Key Laboratory of Geohazard Prevention of Hilly Mountains, Ministry of Natural Resources

Engineering Research Center of Rock-Soil Drilling & Excavation and Protection, Ministry of Education

Key Research and Development Program of Jiangxi Province

Research Foundation of Education Bureau of Jiangxi Province, China

Water Science and Technology Fund of Jiangxi Province in China

Publisher

Geological Society of London

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