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PFC3D simulation of the effect of particle size on the single edge-notched rectangle bar in bending test

机译:PFC3D模拟在弯曲试验中粒径对单边矩形槽的影响

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摘要

Three points bending flexural test was modeled numerically to study the crack propagation in the pre-cracked beams. The pre-existing edge cracks in the beam models were considered to investigate the crack propagation and coalescence paths within the modeled samples. The effects of particle size on the single edge-notched round bar in bending test were considered too. The results show that Failure pattern is constant by increasing the ball diameter. Tensile cracks are dominant mode of failure. These crack initiates from notch tip, propagate parallel to loading axis and coalescence with upper model boundary. Number of cracks increase by decreasing the ball diameter. Also, tensile fracture toughness was decreased with increasing the particle size. In the present study, the influences of particles sizes on the cracks propagations and coalescences in the brittle materials such as rocks and concretes are numerically analyzed by using a three dimensional particle flow code (PFC3D). These analyses improve the understanding of the stability of rocks and concretes structures such as rock slopes, tunnel constructions and underground openings.
机译:对三点弯曲挠性试验进行了数值模拟,以研究裂纹在预裂梁中的扩展。考虑在梁模型中预先存在的边缘裂纹,以研究模型样本中的裂纹扩展和合并路径。在弯曲试验中,也考虑了粒径对单边缘圆钢的影响。结果表明,通过增加球直径,失效模式是恒定的。拉伸裂纹是破坏的主要方式。这些裂纹从缺口尖端开始,平行于加载轴传播,并在模型上边界处合并。减小球直径会增加裂纹数量。另外,拉伸断裂韧性随着粒径的增加而降低。在本研究中,使用三维粒子流代码(PFC3D)数值分析了粒径对脆性材料(如岩石和混凝土)中裂纹扩展和聚结的影响。这些分析提高了对岩石和混凝土结构(例如岩石边坡,隧道施工和地下洞口)稳定性的认识。

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