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Crack Growth Mechanisms from 3-D Surface Flaw with Varied Dipping Angle Under Uniaxial Compression

机译:单轴压缩下的三维表面缺陷的裂纹生长机制

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A number of instability problems in rock engineering projects are caused by crack propagation. However, crack growth mechanisms from 3-dimentional flaw are not fully understood, in particular for 3-D flaw case with varied dipping angle. This study focuses on 3-D surface flaw using real rock specimens containing a flaw with varied inclination angle a from axial loading and dipping angle γ from specimen surface under uniaxial compression. Acoustic emission technique was used for tracing the initiation and growth of micro-cracks inside of specimen. It was found that crack growth process is affected by the dipping angle y of the 3-D flaw. When dipping angle γ ≠ 90°, the thickness of rock above the flaw plane is thinner than that of below the flaw plane. As a result, compressive crack and wing crack initiated easily from the thinner flaw tips. And, the normalized stress for crack initiation σ_i/σ_c, AE events and the AE energy for crack growth decreases with the dipping angle γ. However, for γ = 90°, the thickness of rock above and below of the flaw tips is the same, it was observed that anti-wing crack (crack growth direction opposite to wing crack) initiated first at a certain place away from the flaw tips, then wing crack and compressive crack emerged at the late stage. For this case, the stress σ_i/σ_c, AE events and the AE energy for crack initiation and propagation are at a high value. Thus, for rock mass contains flaws geometry with small dipping angle, some problems of crack propagation may be induced easily during excavation.
机译:岩石工程项目中的许多不稳定性问题是由裂缝传播引起的。然而,来自三维缺陷的裂缝生长机制尤其不完全理解,特别是对于具有变化的浸渍角度的3-D探伤壳体。本研究专注于3-D表面缺陷使用含有缺陷的真实岩石样本,在单轴压缩下从样本表面轴向载荷和浸出角γ从轴向载荷角度γ。声发射技术用于跟踪样本内部微裂纹的起始和生长。发现裂缝生长过程受到3-D缺陷的浸渍角度的影响。当浸渍角γ≠90°时,缺陷平面上方的岩石的厚度比漏洞平面下方更薄。结果,从较薄的缺陷尖端容易地启动压缩裂纹和翼裂。并且,用于裂纹启动σ_i/σ_c,ae事件和用于裂纹生长的AE能量的归一化应力随着浸渍角γ降低。然而,对于γ= 90°,漏洞尖端上方和下方的岩石的厚度是相同的,观察到抗翼裂纹(与机翼裂纹相反的裂纹增长方向)首先在远离缺陷的某个地方启动尖端,然后在晚期出现翼裂和压缩裂缝。对于这种情况,应力σ_i/σ_c,ae事件和用于裂纹启动和传播的EE能量是高值。因此,对于岩石质量含有具有小浸渍角度的漏洞几何形状,可以在挖掘过程中容易地诱导裂缝传播的一些问题。

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