顾义磊, 吴文杰, 李清淼, 汤郑川. 不同围压下岩石全应力应变及卸载过程声发射特征[J]. 煤矿安全, 2015, 46(6): 36-39.
    引用本文: 顾义磊, 吴文杰, 李清淼, 汤郑川. 不同围压下岩石全应力应变及卸载过程声发射特征[J]. 煤矿安全, 2015, 46(6): 36-39.
    GU Yilei, WU Wenjie, LI Qingmiao, TANG Zhengchuan. Acoustic Emission Characteristics of Rock During Whole Stress-strain and Unloading Process Under Different Confining Pressure[J]. Safety in Coal Mines, 2015, 46(6): 36-39.
    Citation: GU Yilei, WU Wenjie, LI Qingmiao, TANG Zhengchuan. Acoustic Emission Characteristics of Rock During Whole Stress-strain and Unloading Process Under Different Confining Pressure[J]. Safety in Coal Mines, 2015, 46(6): 36-39.

    不同围压下岩石全应力应变及卸载过程声发射特征

    Acoustic Emission Characteristics of Rock During Whole Stress-strain and Unloading Process Under Different Confining Pressure

    • 摘要: 深部岩体在采掘过程中受到的扰动,实质上就是围岩体加卸载过程,此过程岩体所表现出来的性质实际上是它的峰后强度特性。基于MTS815岩石力学实验系统和PCT-2型声发射测试分析系统,对不同围压条件下岩石全应力应变及峰后卸载过程中的声发射特性进行研究。研究表明:在岩石屈服阶段前声发射信号较少,而在屈服阶段后,声发射信号迅速增加;累计振铃计数-时间曲线有个明显的台阶,表明试件破坏前出现相对平静期;试件处于残余阶段,所接收到的声发射信号减少,累计振铃计数曲线斜率减小。在卸围压前,声发射信号相对较少,但在卸围压过程中,声发射信号开始活跃,并且围压越高,声发射累计振铃计数更大,释放能量更高,该现象正好说明在高地应力条件下更容易发生岩爆现象。

       

      Abstract: Deep rock mass is in the process of mining disturbance, but rock mass is essentially in the loading-unloading process and properties of this process are, in fact, its post-peak strength characteristics. Based on MTS815 rock mechanics test system and PCT - 2 acoustic emission detection analysis system, acoustic emission characteristics of rock for the whole stress-strain and post-peak unloading process under different confining pressure are studied. The results show that AE signal is less before specimens yielding and gradually raise after specimens yield during triaxial compression test. Cumulative acoustic emission ringing-time cure has obvious step, which is the relatively quiet period of AE and indicates that the specimens will failure. When the specimens reach to the stage of residual strength, AE signal is less and the slope of cumulative acoustic emission is decreasing. The AE signal is comparatively less before unloading confining pressure and it becomes more active in the process of unloading confining pressure. The higher the confining pressure, the more the cumulative acoustic emission ring which receives and release more energy. This phenomenon can explain why rock burst is more prone to happen in high geo-stress area.

       

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