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Research on the Propagation Pattern of 3-D Initial Crack in Rock-Like Material under Uniaxial Tension

机译:单轴拉伸下岩石材料三维初始裂纹扩展模式研究

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摘要

Experiments and numerical simulations were conducted to investigate the propagation patterns of pre-existing 3-D elliptical crack in rock-like material under uniaxial tension. Research results demonstrated that as the load was increased, the wrapping wing cracks initiated near the front of long axis of crack, with the lateral growth of initial crack close to the front of short axis. A distortion surface formed from the growth of initial crack leaded to the macro fracture of samples. The distribution laws of mixed-mode stress intensity factor (SIF) along crack contour were derived with FRANC3D, and propagation process of 3-D crack under tension was simulated. It was concluded that propagation patterns of 3-D crack under tension were quite different from compressive cases, mainly in aspects of growth orientation and velocity.
机译:进行了实验和数值模拟,以研究在岩石材料单轴拉伸下预先存在的3D椭圆形裂纹的扩展模式。研究结果表明,随着载荷的增加,包裹翼裂纹在长轴裂纹的前部附近开始,而初始裂纹的侧向生长在短轴裂纹的前部附近。由初始裂纹的增长形成的变形表面导致样品的宏观断裂。利用FRANC3D推导了混合模式应力强度因子(SIF)沿裂纹轮廓的分布规律,模拟了3D裂纹在张力作用下的扩展过程。结论是,拉伸下的3-D裂纹的扩展方式与压缩情况有很大不同,主要是在生长方向和速度方面。

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