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Investigation on mechanical behavior and crack coalescence of sandstone specimens containing fissure-hole combined flaws under uniaxial compression

机译:单轴压缩下裂隙孔组合缺陷的砂岩样本力学行为和裂缝结合调查

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This study focuses on the effect of pre-existing flaw geometry on mechanical behavior and crack coalescence modes of sandstone specimens containing combined flaws with different fissure angle, ligament length and fissure length under uniaxial compression. The flaw geometry is a combination of a single hole and an inclined fissure underneath, which is generated by a high pressure water-jet cutting machine and is different from that reported in previous studies. The effect of flaw geometry on mechanical behavior of sandstone specimens is analyzed. Basically, mechanical parameters including the peak strength, peak axial strain, elastic modulus and secant Young's modulus for the flawed specimens are lower than those for the intact specimens, with the reduction extent related to the fissure angle, ligament length and fissure length. Variation trends of the crack initiation stress for all tested cases are studied. Initiated crack types and cracking modes also depend on the combined flaws geometry. For the flawed specimens with a small fissure angle, ligament length or fissure length, cracking modes are generally characterized by cracks initiated from the hole-wall and evolved to the specimen boundary. However, when the fissure angle, ligament length or fissure length is increased, cracks initiated from both the hole-wall and fissure tips produce the main failure planes, accompanied by a free-standing "triangular prism structure" within the specimens. Numerical simulations using RFPA(2D) (Rock Failure Process Analysis in two dimensions) are carried out on the flawed sandstone specimens and agree well with the experimental results in the peak strength and overall cracking behavior.
机译:本研究重点介绍了在单轴压缩下具有不同裂隙角,韧带长度和裂隙长度的砂岩样本对砂岩样本的力学行为和裂缝结合模式的影响。缺陷几何形状是单孔和下面的倾斜裂缝的组合,其由高压水喷射机产生,并且与先前研究中报道的不同。分析了缺陷几何对砂岩样本力学行为的影响。基本上,包括峰强度,峰值轴向应变,弹性模量和缺陷样品的初始模量的机械参数低于完整试样的力量,减少与裂缝角,韧带长度和裂缝长度相关的减少范围。研究了所有测试病例的裂纹启动应力的变异趋势。发起的裂缝类型和开裂模式也取决于组合的漏洞几何形状。对于具有小裂缝角,韧带长度或裂缝长度的缺陷的样本,裂化模式通常通过从空穴壁发起并进化到样本边界的裂缝的特征。然而,当裂缝角度,韧带长度或裂缝长度增加时,从孔壁和裂缝尖端发起的裂缝产生主体故障平面,伴随着标本内的独立式“三角形棱镜结构”。使用RFPA(2D)的数值模拟(两个维度的岩石破坏过程分析)在缺陷的砂岩样本上进行,并且在峰值强度和整体开裂行为的实验结果中吻合。

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