|
|
|
| ACOUSTIC EMISSION CHARACTERISTICS AND FAILURE MECHANISM OF HIGH-STRESSED ROCKS UNDER LATERAL DISTURBANCE |
| ZHOU Zilong1,LI Guonan1,NING Shuli1,DU Kun2 |
| (1. School of Resources and Safety Engineering,Central South University,Changsha,Hunan 410083,China;2. Advanced Research Center,Central South University,Changsha,Hunan 410083,China) |
|
|
|
|
Abstract With newly-built experimental equipment,tests on 100 mm×100 mm×100 mm granite specimens under vertical static stresses with lateral disturbance have been conducted. Numerical simulation with software PFC3D was used to reveal the inner mechanism of failure. The acoustic emission(AE) system PCI–2 was used to pick up AE signals. It?s found that the peak AE energy event usually happened at the unloading stage of the disturbance stress. The peak AE energy event tended to happen earlier and more frequently with the increase of the static stresses. Wave velocities at different positions were used to evaluate the damage distribution of the specimen at different loading conditions. RA values were also used to investigate the failure mechanism of specimens. When the static stress was low,only few shear cracks were triggered and a small shear failure zone was observed at the direct contact zone of the disturbance load. When the static stress was high,the shear cracks and the tensile cracks were both activated and the proliferation of tensile cracks resulted in the structural failure of specimens eventually. Numerical investigation also demonstrated this phenomenon.
|
|
Received: 31 October 2013
|
|
|
|
| [1] 钱七虎. 非线性岩石力学的新进展——深部岩体力学的若干问题[C]// 中国岩石力学与工程学会编. 第八次全国岩石力学与工程学术大会论文集. 北京:科学出版社,2004:10–17.(QIAN Qihu. The current development of nonlinear rock mechanics:the mechanics problems of deep rock mass[C]// Chinese Society of Rock Mechanics and Engineering ed. Proceedings of the 8th Rock Mechanics and Engineering Conference. Beijing:Science Press,2004:10–17.(in Chinese))
[2] 钱七虎. 深部岩体工程响应的特征科学现象及“深部”的界定[J]. 东华理工学院学报,2004,27(1):1–5.(QIAN Qihu. The characteristic scientific phenomena of engineering response to deep rock mass and implication of deepness[J]. Journal of East China Institute of Technology,2004,27(1):1–5.(in Chinese))
[3] 古德生. 金属矿床深部开采中的科学问题[C]// 香山科学会议编. 科学前沿与未来(第六集). 北京:中国环境科学出版社,2002:192–201.(GU Desheng. The science problems of metal bed mining at depth[C]// Xiangshan Science Congress ed. Science Foreland and Future(Volume VI). Beijing:China Environmental Science Press,2002:192–201.(in Chinese))
[4] 何满潮,钱七虎. 深部岩体力学基础[M]. 北京:科学出版社,2010:16–22.(HE Manchao,QIAN Qihu. The basis of deep rock mechanics[M]. Beijing:Science Press,2010:16–22.(in Chinese))
[5] 何满潮,酣和平,彭苏萍,等. 深部开采岩体力学研究[J]. 岩石力学与工程学报,2005,24(16):2 803–2 813.(HE Manchao,XIE Heping,PENG Suping,et al. Study on rock mechanics in deep mining engineering[J]. Chinese Journal of Rock Mechanics and Engineering. 2005,24(16):2 803–2 813.(in Chinese))
[6] 王贤能,黄润秋. 动力扰动对岩爆的影响分析[J]. 山地研究,1998,16(3):188–192.(WANG Xianneng,HUANG Runqiu. Analysis of the influence of the dynamic disturbance on rock burst[J]. Mountain Research,1998,16(3):188–192.(in Chinese))
[7] 张晓春,卢爱红,王军强. 动力扰动导致巷道围岩层裂结构及冲击矿压的数值模拟[J]. 岩石力学与工程学报,2006,25(增1):3 110– 3 114.(ZHANG Xiaochun,LU Aihong,WANG Junqiang. Numerical simulation of layer-crack structure of surrounding rock and rockburst in roadway under dynamic disturbance[J]. Chinese Journal of Rock Mechanics and Engineering,2006,25(Supp.1):3 110–3 114.(in Chinese))
[8] ZHU W C,LI Z H,HU L,et al. Numerical simulation on rockburst of underground opening triggered by dynamic disturbance[J]. Tunnelling and Underground Space Technology,2010,25(5):587–599.
[9] 姜福兴,魏德全,姚顺利,等. 冲击地压防治关键理论与技术分析[J]. 煤炭科学技术,2013,41(6):6–9.(JIANG Fuxing,WEI Dequan,YAO Shunli,et al. Key theory and technical analysis of mine pressure buping prevention and control[J]. Coal Science and Technology,2013,41(6):6–9.(in Chinese))
[10] 李夕兵,周子龙,叶州元,等. 岩石动静组合加载力学特性研究[J]. 岩石力学与工程学报,2008,27(7):1 387–1 395.(LI Xibing, ZHOU Zilong,YE Zhouyuan,et al. Study of rock mechanical characteristics under coupled static and dynamic loads[J]. Chinese Journal of Rock Mechanics and Engineering,2008,27(7):1 387–1 395.(in Chinese))
[11] LI X B,ZHOU Z L,LOK T S,et al. Innovative testing technique of rock subjected to coupled static and dynamic loads[J]. International Journal of Rock Mechanics and Mining Sciences,2008,45(5):739–748.
[12] ZHOU Z L,LI X B,ZOU Y,et al. Dynamic Brazilian tests of granite under coupled static and dynamic loads[J]. Rock Mechanics and Rock Engineering,2014,47(2):495–505.
[13] LOCKNER D. The role of acoustic emission in the study of rock fracture[J]. International Journal of Rock Mechanics and Mining Science and Geomechanics Abstracts,1993,30(7):883–899.
[14] 李庶林,尹贤刚,王泳嘉,等. 单轴受压岩石破坏全过程声发射特征研究[J]. 岩石力学与工程学报,2004,23(15):2 499–2 503.(LI Shulin,YIN Xiangang,WANG Yongjia,et al. Studies on acoustic emission characteristics of uniaxial compressive rock failure[J]. Chinese Journal of Rock Mechanics and Engineering,2004,23(15): 2 499–2 503.(in Chinese))
[15] 李俊平,周创兵. 岩体的声发射特征试验研究[J]. 岩土力学,2004,25(3):374–378.(LI Junping,ZHOU Chuangbing. Experimental research on acoustic emission characteristics of rock mass[J]. Rock and Soil Mechanics,2004,25(3):374–378.(in Chinese))
[16] 潘长良,祝方才,曹 平,等. 单轴压力下岩爆倾向岩石的声发射特征[J]. 中南大学学报:自然科学版,2001,32(4):336–339.(PAN Changliang,ZHU Fangcai,CAO Ping,et al. Characteristics of acoustic emission of bursting-intended rocks under uniaxial compression[J]. Journal of Central South University:Science and Technology,2001,32(4):336–339.(in Chinese))
[17] 逄焕东,张兴民,姜福兴. 岩石类材料声发射事件的波谱分析[J].煤炭学报,2004,29(5):540–544.(PANG Huandong,ZHANG Xingmin,JIANG Fuxing. The spetrum analysis of acoustic emission signal in rock materials[J]. Journal of China Coal Society,2004,29(5):540–544.(in Chinese))
[18] CAI M,MORIOKA H,KAISER PK et al. Back-analysis of rock mass strength parameters using AE monitoring data[J]. International Journal of Rock Mechanics and Mining Sciences,2007,44(4):538–549.
[19] 王其胜,万国香,李夕兵. 动静组合加载下岩石破坏的声发射试验[J]. 爆炸与冲击,2010,30(3):247–253(WANG Qisheng,WAN Guoxiang,LI Xibing. Acoustic emission experiment of rock failure under coupled static-dynamic load[J]. Explosion and Shock Waves,2010,30(3):247–253.(in Chinese))
[20] 万国香,王其胜,李夕兵. 应力波作用下岩石声发射能量特征[J]. 试验力学,2012,(6):727–733.(WAN Guoxiang,WANG Qisheng,LI Xibing. On the acoustic emission(AE) energy characteristics of rock subjected to stress waves[J]. Journal of Experimental Mechanics,2012,(6):727–733.(in Chinese))
[21] 赵恩来,王恩元. 岩土破坏过程声发射特征的试验研究[J]. 防灾减灾工程学报,2006,26(3):316–320.(ZHAO Enlai,WANG Enyuan. Experimental study on acoustic emission characteristics of rock and soil in the failure process[J]. Journal of Disaster Prevention and Mitigation Engineering,2006,26(3):316–320.(in Chinese))
[22] 苗金丽,何满潮,李德建,等. 花岗岩应变岩爆声发射特征及微观断裂机制[J]. 岩石力学与工程学报,2009,28(8):1 593– 1 603.(MIAO Jinli,HE Manchao,LI Dejian,et al. Acoustic emission characteristics of granite under strain rockburst test an its micro-fracture mechanism[J]. Chinese Journal of Rock Mechanics and Engineering,2009,28(8):1 593–1 603.(in Chinese))
[23] SHIOTANI T,OHTSU M,IKEDA K. Detection and evaluation of AE waves due to rock deformation[J]. Construction and Building Materials,2001,15(5):235–246.
[24] 黄明利,冯夏庭,王水林. 多裂纹在不同岩石介质中的扩展贯通机制分析[J]. 岩土力学,2002,23(2):142–146.(HUANG Mingli,FENG Xiating,WANG Shuilin. Numerical simulation of propagation and coalescence processes of multi-crack in different rock media[J]. Rock and Soil Mechanics,2002,23(2):142–146.(in Chinese))
[25] 黄明利,唐春安,朱万成. 岩石破裂过程的数值模拟研究[J]. 岩石力学与工程学报,2000,19(4):468–471.(HUANG Mingli,TANG Chun?an,ZHU Wancheng. Numerical simulation on failure process of rock[J]. Chinese Journal of Rock Mechanics and Engineering,2000,19(4):468–471.(in Chinese))
|
|
|
|