Experimental Investigation of the Peak Shear Strength Criterion Based on Three-Dimensional Surface Description

被引:0
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作者
Quansheng Liu
Yongchao Tian
Peiqi Ji
Hao Ma
机构
[1] Wuhan University,The Key Laboratory of Safety for Geotechnical and Structural Engineering of Hubei Province, School of Civil Engineering
[2] Institute of Rock and soil Mechanics,State Key Laboratory of Geomechanics and Geotechnical Engineering
[3] Chinese Academy of Sciences,undefined
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关键词
Three-dimensional morphology; Joint; Apparent dip angle; Average joint height; Peak shear strength;
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学科分类号
摘要
The three-dimensional (3D) morphology of joints is enormously important for the shear mechanical properties of rock. In this study, three-dimensional morphology scanning tests and direct shear tests are conducted to establish a new peak shear strength criterion. The test results show that (1) surface morphology and normal stress exert significant effects on peak shear strength and distribution of the damage area. (2) The damage area is located at the steepest zone facing the shear direction; as the normal stress increases, it extends from the steepest zone toward a less steep zone. Via mechanical analysis, a new formula for the apparent dip angle is developed. The influence of the apparent dip angle and the average joint height on the potential contact area is discussed, respectively. A new peak shear strength criterion, mainly applicable to specimens under compression, is established by using new roughness parameters and taking the effects of normal stress and the rock mechanical properties into account. A comparison of this newly established model with the JRC–JCS model and the Grasselli’s model shows that the new one could apparently improve the fitting effect. Compared with earlier models, the new model is simpler and more precise. All the parameters in the new model have clear physical meanings and can be directly determined from the scanned data. In addition, the indexes used in the new model are more rational.
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页码:1005 / 1025
页数:20
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