首页> 外文期刊>International journal of geomechanics >Strength and Failure Characteristics of Rocklike Material Containing a Large-Opening Crack under Uniaxial Compression: Experimental and Numerical Studies
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Strength and Failure Characteristics of Rocklike Material Containing a Large-Opening Crack under Uniaxial Compression: Experimental and Numerical Studies

机译:单轴压缩下含大开裂岩石样材料的强度和破坏特性:实验与数值研究

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摘要

A series of uniaxial compression experiments was conducted on rocklike specimens containing a large-opening crack to investigate the effect of inclination angle and length of crack on the uniaxial compressive strength (UCS) and failure mode. A particle flow code, based on the discrete element method, was used to simulate the propagation process and reveal the fracture mechanism of a preexisting crack with a large opening. The failure of these large-opening crack specimens was mainly caused by the development of shear secondary cracks and not by tensile wing cracks, although the shear cracks initiated from the crack tip after the tensile wing cracks. The preexisting large crack remained open after compression failure. The mean rupture angle was approximately 63.6 degrees, and it was independent of the crack inclination angle and length. An increase in inclination angle from 0 degrees to 90 degrees or a decrease in crack length from 30 to 0 mm led to a nonlinear increase in UCS owing to the increase in effective shearing resistance area. The experimental results are in accordance with the numerical results, and they provide a significant understanding of the UCS and failure characteristics of rocks with large-opening cracks.
机译:对包含大开口裂缝的岩石样试样进行了一系列单轴压缩实验,以研究倾角和裂缝长度对单轴抗压强度(UCS)和破坏模式的影响。基于离散元方法的粒子流代码被用来模拟传播过程,并揭示了大开口早已存在的裂纹的断裂机理。这些大开口裂纹试样的失效主要是由剪切二次裂纹的发展而不是拉伸翼裂纹引起的,尽管剪切裂纹是从拉伸翼裂纹之后的裂纹尖端开始的。压缩失败后,先前存在的大裂纹仍保持打开状态。平均破裂角约为63.6度,并且与裂纹倾角和长度无关。倾斜角从0度增加到90度,或者裂纹长度从30度减少到0毫米,这导致UCS的非线性增加,这是由于有效抗剪切力的增加所致。实验结果与数值结果吻合,它们对具有大开口裂缝的岩石的UCS和破坏特征提供了重要的了解。

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