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Study on the Interaction of Collinear Cracks and Wing Cracks and Cracking Behavior of Rock under Uniaxial Compression

机译:共轴裂纹与翼裂纹的相互作用及岩石单轴压缩下的开裂行为研究

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This paper investigates the crack interaction, initiation, and propagation rules of rock-like materials containing two collinear cracks. Based on the Kachanov method, the formulations for stress intensity factors (SIFs) of two collinear cracks and two winged cracks are derived, respectively. The influences of bridge ligament and crack length on the crack interaction are analyzed theoretically. The results show that the propagation of a long crack is independent of crack interaction when and the same rule applies for a short crack when . With the growth of wing cracks, the SIF of wings first remarkably decreases and then it tends toward a steady value. Subsequently, the propagation of collinear cracks and cracking processes under uniaxial compression are analyzed experimentally and numerically. Both the experimental results and simulation results demonstrate that shear cracks tend to initiate and propagate at higher inclination angle. The crack coalescence is affected by the inclination angle of bridge ligament. For increasing the inclination angle, the crack coalescence varies from wing crack failure to shear crack coalescence. As bridge ligament increases, the crack coalescence varies from shear crack coalescence to shear-wing crack coalescence and then to wing crack failure.
机译:本文研究了包含两个共线裂纹的类岩石材料的裂纹相互作用,萌生和扩展规律。基于Kachanov方法,分别推导了两个共线裂纹和两个翼状裂纹的应力强度因子(SIF)公式。从理论上分析了桥梁韧带和裂缝长度对裂缝相互作用的影响。结果表明,当时,长裂纹的扩展不受裂纹相互作用的影响,当时,短裂纹适用相同的规则。随着机翼裂纹的增长,机翼的SIF首先显着下降,然后趋于稳定值。随后,实验和数值分析了共线裂纹的扩展和单轴压缩下的开裂过程。实验结果和模拟结果均表明,剪切裂纹倾向于在较高的倾角下发生并扩展。裂纹的合并受桥韧带倾斜角度的影响。为了增加倾斜角度,裂纹的融合从机翼裂纹破坏到剪切裂纹的融合。随着桥韧度的增加,裂缝的合并从剪切裂缝的合并到剪切翼型裂缝的合并,再到翼型裂缝的破坏变化。

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