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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >Experiment and peridynamic simulation on cracking behavior of red sandstone containing a single non-straight fissure under uniaxial compression
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Experiment and peridynamic simulation on cracking behavior of red sandstone containing a single non-straight fissure under uniaxial compression

机译:在单轴压缩下含有单个非直线裂缝的红砂岩开裂行为的实验与逐方仿真

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摘要

It is widely accepted that the strength, deformability, and failure behaviors of rock material are strongly influenced by widespread natural fissures. Research focusing on the crack initiation, propagation, and coalescence behavior in fissured rock material is important to ensure the reliability and predictability of rock engineering. However, the types and forms of pre-existing fissures are complex and variable; thus, mechanical experiments have rarely been conducted on rock samples containing non-straight prefabricated open fissures. In this research, the strength, deformability, and failure behaviors of sandstone samples containing a single non-straight fissure were systematically investigated by a series of uniaxial compression experiments and numerical simulations. First, the influence of the fissure angle (alpha) on the strength and deformation characteristics of red sandstone containing a single non-straight fissure was evaluated. Then, the ordinary state-based peridynamics model was used to investigate the fracture behavior of red sandstone specimens with respect to various alpha values. The results indicate that for alpha = 0 degrees-15 degrees and 75 degrees-90 degrees, tensile cracks first initiated from the convex points of the prefabricated fissure, and the crack initiation position transferred from the convex point to the tip of the prefabricated fissure for alpha = 30 degrees-60 degrees. In addition, for the alpha = 0 degrees-90 degrees, the cracks initiated in the form of tensile cracks, and the ultimate failure modes were mixed tensile and shear failure. Secondary cracks always appeared in the form of shear crack. Moreover, for alpha >= 75 degrees, fewer cracks were initiated before the peak strength was reached; afterward, the crack initiations were more prolific, and more acoustic emission counts were observed.
机译:众所周知,岩土材料的强度,可变形性和失效行为受到广泛的自然裂缝的强烈影响。重点研究裂纹岩石材料中的裂纹启动,传播和聚结行为对于确保岩石工程的可靠性和可预测性很重要。然而,预先存在的裂缝的类型和形式是复杂的和变量;因此,在含有非直线预制开裂裂缝的岩石样品上很少进行机械实验。在该研究中,通过一系列单轴压缩实验和数值模拟系统地研究了含有单个非直线裂缝的砂岩样品的强度,可变形性和失效行为。首先,评价裂缝角(α)对含有单个非直线裂缝的红色砂岩强度和变形特性的影响。然后,使用普通的普通状态性表演模型来研究红砂样品相对于各种α值的裂缝行为。结果表明,对于α= 0度-15度和75度-90度,首先从预制裂缝的凸点发起的拉伸裂缝,并且从凸起点转移到预制裂缝的尖端的裂缝起始位置alpha = 30度-60度。另外,对于α= 0度-90度,以拉伸裂纹的形式发起的裂缝,并且最终的失效模式是混合拉伸和剪切失效。二次裂缝总是出现在剪切裂纹的形式中。此外,对于α> = 75度,在达到峰强度达到峰值强度之前启动了更少的裂缝;之后,裂缝初始较多,观察更多的声发射计数。

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