Influence of Loading and Unloading Stress Paths on the Deformation and Failure Features of Jinping Marble Under True Triaxial Compression

被引:1
作者
Xia-Ting Feng
Hong Xu
Chengxiang Yang
Xiwei Zhang
Yaohui Gao
机构
[1] Northeastern University,Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines
[2] Chinese Academy of Sciences,State Key Laboratory of Geomechanics and Geotechnical Engineering, Institute of Rock and Soil Mechanics
来源
Rock Mechanics and Rock Engineering | 2020年 / 53卷
关键词
True triaxial compression test; Loading and unloading; Stress path; Bearing capacity; Deformation; Failure mechanism;
D O I
暂无
中图分类号
学科分类号
摘要
To study the difference in the failures of laboratories #7 and #8 of the China Jinping Underground Laboratory Phase II (CJPL-II), different loading and unloading stress path tests were carried out under a true triaxial compression condition based on the measured in situ stress of CJPL-II. The strength, deformation and failure mechanisms of Jinping marble under different stress paths were thoroughly investigated. The results showed that under the same stress state as that at sample failure, the bearing capacity and deformation of the unloading stress path were greater than those of the loading stress path. The bearing capacity and deformation in the σ2 and σ3 directions of stress path II and stress path III were similar, and the others decreased from stress path IV to stress path V under unloading conditions. The failure mode results reflect the violence of the unloading failure. The failure features and mechanisms of different stress paths were analysed though the acoustic emission (AE) ring, cumulative energy and strain energy trend. This research may provide a reference for the excavation and support of deep underground works.
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页码:3287 / 3301
页数:14
相关论文
共 107 条
[1]  
Barla M(2000)Stress paths around a circular tunnel- Percorsi di sollecitazione attorno ad una galleria circolare Rivista Italiana di Geotecnica 34 53-58
[2]  
Bieniawski ZT(1967)Mechanism of brittle fracture of rock, parts I, II and III Int J Rock Mech Min Sci Abstr 4 395-430
[3]  
Cai M(2008)Influence of intermediate principal stress on rock fracturing and strength near excavation boundaries - insight from numerical modeling Int J Rock Mech Min Sci 45 763-772
[4]  
Cai M(2005)Assessment of excavation damaged zone using a micromechanics model Tunn Undergr Sp Tech 20 301-310
[5]  
Kaiser PK(2004)Damage initiation and propagation in hard rock during tunnelling and the influence of near-face stress rotation Int J Rock Mech Min Sci 41 785-812
[6]  
Diederichs MS(2001)Numerical modelling of three-dimension stress rotation ahead of an advancing tunnel face Int J Rock Mech Min Sci 38 499-518
[7]  
Kaiser PK(2016)A novel mogi type true triaxial testing apparatus and its use to obtain complete stress–strain curves of hard rocks Rock Mech Rock Eng 49 1-14
[8]  
Eberhardt E(2017)Evaluation and reduction of the end friction effect in true triaxial tests on hard rocks Int J Rock Mech Min Sci 97 144-148
[9]  
Eberhardt E(2018)In situ observation of rock spalling in the deep tunnels of the china Jinping underground laboratory (2400 m depth) Rock Mech Rock Eng 51 1193-1213
[10]  
Feng XT(2019)ISRM suggested method: determining deformation and failure characteristics of rocks subjected to true triaxial compression Rock Mech Rock Eng 52 2011-2020