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| TEST STUDY OF SANDSTONE CRACKING AND PROPAGATION PROCESS UNDER COMPRESSIVE-SHEAR STRESS |
| XU Jiang1,2,LIU Jing1,2,WU Hui1,2,CHENG Lichao1,2,LU Lifeng1,2 |
(1. State Key Laboratory of Coal Mine Disaster Dynamics and Control,Chongqing University,Chongqing 400044,China;
2. State and Local Joint Engineering Laboratory of Methane Drainage in Complex Coal Gas Seam,Chongqing University,Chongqing 400044,China) |
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Abstract Using self-developed meso-shear test equipment for coal and rock containing gas and PCI–2 acoustic emission testing and analytical system,the compressive-shear tests of sandstone at normal stresses with 0.0,1.5,3.0,4.5,6.0 MPa under the shear load condition were carried out. The deformation and AE characteristics were studied,and the mesoscopic feature of the cracks? evolution was analyzed. The data shows that as normal stress increases,the shear strength increases,and the peak shear force and corresponding peak displacement increase linearly. Under the condition of different normal stresses,the rock has some distinctions on shapes or appearances. However,they basically extend along the expected shearing surface. As normal stress increases,the crack initiation and propagation will get later,the instability and failure of the rock become more difficult. By the impacts of normal stresses,the AE event rate doesn?t reach the maximum value along with the shearing stress increases to the peak value. The fact is that the AE event rate increases rapidly after the shear stress reaches the peak value,also with the tiny cracks spread suddenly. With these two conditions,the AE event rate finally reaches the maximum value,then the rock unstable failure had been destroyed after those cracks went through it. As normal stress increases,the friction of particles between two sides of shear surface also increases. Meanwhile,the major crack is wider and the shapes of cracks become more complicated due to effects of the unbalanced stress distributions and also the internal structures heterogeneity of materials.
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Received: 16 April 2012
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| [1] 蔡美峰,何满潮,刘东燕. 岩石力学与工程[M]. 北京:科学出版 社,2002:12–17.(CAI Meifeng,HE Manchao,LIU Dongyan. Rock mechanics and engineering[M]. Beijing:Science Press,2002:12–17.(in Chinese))
[2] JAEGER J C. Friction of rocks and stability of rock slopes[J]. Geotechnique,1971,21(2):97–134.
[3] PLESHA M E. Constitutive models for rock discontinuities with dilatancy and surface degradation[J]. International Journal for Numerical and Analytical Methods in Geomechanics,1987,11(4):
345–362.
[4] 刘冬梅,龚永胜,谢锦平,等. 压剪应力作用下岩石变形破裂全程动态监测研究[J]. 南方冶金学院学报,2003,24(5):69–72.(LIU Dongmei,GONG Yongsheng,XIE Jinping,et al. Wholly dynamic
testing study of rock deformation and fracture under compressive and shearing stress[J]. Journal of Southern Institute of Metallurgy,2003,24(5):69–72.(in Chinese))
[5] 刘冬梅,谢锦平,周玉斌,等. 岩石压剪耦合破坏过程的实时监测研究[J]. 岩石力学与工程学报,2004,23(10):1 616–1 620.(LIU Dongmei,XIE Jinping,ZHOU Yubin,et al. Real-time testing study of rock fracture under coupled compression and shear[J]. Chinese Journal of Rock Mechanics and Engineering,2004,23(10):1 616– 1 620.(in Chinese))
[6] 刘冬梅,蔡美峰,周玉斌,等. 岩石裂纹扩展过程的动态监测研究[J]. 岩石力学与工程学报,2006,25(3):467–472.(LIU Dongmei,CAI Meifeng,ZHOU Yubin,et al. Dynamic monitoring on developing process of rock cracks[J]. Chinese Journal of Rock Mechanics and Engineering,2006,25(3):467–472.(in Chinese))
[7] 刘冬梅,蔡美峰,周玉斌. 岩石细观损伤演化与宏观变形响应关联研究[J]. 中国钨业,2006,21(4):16–19.(LIU Dongmei,CAI Meifeng,ZHOU Yubin. Study on the relationship between mesodamage development and macrodeformation of rock under uniaxial compression[J]. China Tungsten Industry,2006,21(4):16–19.(in Chinese))
[8] 杜守继,朱建栋,职洪涛. 岩石节理经历不同变形历史的剪切试验研究[J]. 岩石力学与工程学报,2006,25(1):56–60.(DU Shouji,ZHU Jiandong,ZHI Hongtao. Shear tests on rock joints under different shear deformation histories[J]. Chinese Journal of Rock Mechanics and Engineering,2006,25(1):56–60.(in Chinese))
[9] 倪骁慧,朱珍德,赵 杰,等. 岩石破裂全程数字化细观损伤力学试验研究[J]. 岩土力学,2009,30(11):3 283–3 290.(NI Xiaohui,ZHU Zhende,ZHAO Jie,et al. Meso-damage mechanical digitalization test of complete process of rock failure[J]. Rock and Soil Mechanics,2009,30(11):3 283–3 290.(in Chinese))
[10] 赵兴东,唐春安,李元辉,等. 花岗岩破裂全过程的声发射特性研究[J]. 岩石力学与工程学报,2006,25(增2):3 673–3 678. (ZHAO Xingdong,TANG Chun?an,LI Yuanhui,et al. Study on AE activity characteristics under uniaxial compression loading[J]. Chinese Journal of Rock Mechanics and Engineering,2006,25(Supp.2):3 673–3 678.(in Chinese))
[11] 周小平,张永兴. 大厂铜矿细脉带岩石结构面直剪实验中声发射特性研究[J]. 岩石力学与工程学报,2002,21(5):724–727.(ZHOU Xiaoping,ZHANG Yongxing. Study on the property of acoustic emission straight shearing test of rock joint in Dachang copper mine[J]. Chinese Journal of Rock Mechanics and Engineering,2002,21(5):724–727.(in Chinese))
[12] 许 江,彭守建,尹光志,等. 含瓦斯煤岩细观剪切实验装置的研制及应用[J]. 岩石力学与工程学报,2011,30(4):677–685.(XU Jiang,PENG Shoujian,YIN Guangzhi,et al. Development of meso-shear test equipment for coal rock containing gas and its application[J]. Chinese Journal of Rock Mechanics and Engineering,2011,30(4):677–685.(in Chinese))
[13] 赵兴东,刘建坡,李元辉,等. 岩石声发射定位技术及其实验验证[J]. 岩土工程学报,2008,30(10):1 472–1 476.(ZHAO Xingdong,LIU Jianpo,LI Yuanhui,et al. Experimental verification of rock locating technique with acoustic emission[J]. Chinese Journal of Rock Mechanics and Engineering,2008,30(10):1 472–1 476.(in Chinese))
[14] 李海波,冯海鹏,刘 博. 不同剪切速率下岩石节理的强度特性研究[J]. 岩石力学与工程学报,2006,25(12):2 435–2 440.(LI Haibo,FENG Haipeng,LIU Bo. Study on strength behaviors of rock joints under different shearing deformation velocities[J]. Chinese Journal of Rock Mechanics and Engineering,2006,25(12):2 435–2 440. (in Chinese))
[15] 尹贤刚,李庶林,唐海燕,等. 岩石破坏声发射平静期及其分形特征研究[J]. 岩石力学与工程学报,2009,28(增2):3 383–3 390. (YIN Xiangang,LI Shulin,TANG Haiyan,et al. Study on quiet peried and its fractal characteristics of rock failure acoustic emission[J]. Chinese Journal of Rock Mechanics and Engineering,2009,28(Supp.2): 3 383–3 390.(in Chinese))
[16] 张后全,贺永年,韩立军,等. 岩石破裂过程微裂纹演化规律有限元统计分析[J]. 中国矿业大学学报,2007,36(2):166–171. (ZHANG Houquan,HE Yongnian,HAN Lijun,et al. Statistic analysis of the evolution laws of microcracks in rock failure process by finite element method[J]. Journal of China University of Mining and Technology,2007,36(2):166–171.(in Chinese))
[17] 许 江,陆丽丰,杨红伟,等. 剪切荷载作用下砂岩细观开裂扩展演化特征研究[J]. 岩石力学与工程学报,2011,30(5):944–950. (XU Jiang,LU Lifeng,YANG Hongwei,et al. Study of evolution law of microfracturing progress of sandstone under shear loading[J]. Chinese Journal of Rock Mechanics and Engineering,2011,30(5):944–950.(in Chinese)) |
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