首页> 外文期刊>International Journal of Fracture >Strength failure and crack coalescence behavior of brittle sandstone samples containing a single fissure under uniaxial compression
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Strength failure and crack coalescence behavior of brittle sandstone samples containing a single fissure under uniaxial compression

机译:单轴裂纹下含单裂隙的脆性砂岩样品的强度破坏和裂纹聚结行为

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Uniaxial compression experiments were performed for brittle sandstone samples containing a single fissure by a rock mechanics servo-controlled testing system. Based on the experimental results of axial stress-axial strain curves, the influence of single fissure geometry on the strength and deformation behavior of sandstone samples is analyzed in detail. Compared with the intact sandstone sample, the sandstone samples containing a single fissure show the localization deformation failure.The uniaxial compressive strength, Young’smodulus and peak axial strain of sandstone samples with pre-existing single fissure are all lower than that of intact sandstone sample, which is closely related to the fissure length and fissure angle. The crack coalescence was observed and characterized from tips of pre-existing single fissure in brittle sandstone sample. Nine different crack types are identified based on their geometry and crack propagation mechanism (tensile, shear, lateral crack, far-field crack and surface spalling) for single fissure, which can be used to analyze the failure mode and cracking process of sandstone sample containing a single fissure under uniaxial compression. To confirm the subsequence of crack coalescence in sandstone sample, the photographic monitoring and acoustic emission (AE) technique were adopted for uniaxial compression test. The real-time crack coalescence process of sandstone containing a single fissure was recorded during the whole loading. In the end, the influence of the crack coalescence on the strength and deformation failure behavior of brittle sandstone sample containing a single fissure is analyzed under uniaxial compression. The present research is helpful to understand the failure behavior and fracture mechanism of engineering rock mass (such as slope instability and underground rock burst).
机译:通过岩石力学伺服控制测试系统对包含单个裂缝的脆性砂岩样品进行了单轴压缩实验。基于轴向应力-轴向应变曲线的实验结果,详细分析了单裂隙几何形状对砂岩样品强度和变形行为的影响。与完整的砂岩样品相比,含单个裂隙的砂岩样品表现出局部变形破坏。预先存在单一裂隙的砂岩样品的单轴抗压强度,杨氏模量和峰值轴向应变均低于完整的砂岩样品。 ,这与裂缝长度和裂缝角度密切相关。从脆性砂岩样品中预先存在的单个裂缝的尖端观察并表征了裂纹的聚结。根据单裂纹的几何形状和裂纹扩展机制(拉伸,剪切,横向裂纹,远场裂纹和表面剥落)识别出九种不同的裂纹类型,可用于分析含砂岩样品的破坏模式和开裂过程。单轴压缩下的单个裂缝。为了确定砂岩样品中裂纹合并的子序列,采用了照相监测和声发射(AE)技术进行单轴压缩试验。在整个加载过程中,记录了包含单个裂缝的砂岩的实时裂缝聚结过程。最后,分析了裂纹合并对单裂纹脆性砂岩样品的强度和变形破坏行为的影响。本研究有助于了解工程岩体的破坏行为和断裂机理(如边坡失稳和地下岩爆)。

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