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首页> 外文期刊>Arabian journal of geosciences >Effects of crack inclination on shear failure of brittle geomaterials under compression
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Effects of crack inclination on shear failure of brittle geomaterials under compression

机译:裂纹倾斜度对压缩下脆性地质材料剪切失效的影响

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摘要

A micromechanics-based approach is proposed to predict the shear failure of brittle rocks under compression. Formulation of this approach is based on an improved wing microcrack model, the Mohr-Coulomb failure criterion, and a micro-macro damage model. The improved wing microcrack model considers the effects of crack inclination angle on mechanical behaviors of rocks. The micro-macro damage model describes the relation between crack growth and axial strain. Furthermore, comparing experimental and theoretical relations between crack initiation stress and confining pressure, model parameters ( i.e., mu, a, ss, and phi) hardly measured by test are solved. Effects of crack inclination angle, crack size, and friction coefficient on stress-strain relation, compressive strength, internal friction angle, cohesion, shear failure plane angle, and shear strength are discussed in details. A most disadvantaged crack angle is found, which is corresponding to the smallest compressive strength, cohesion, internal friction angle, and shear strength of rocks. Rationality of the theoretical results is verified by the published experimental results. This approach provides a theoretical prediction for effects of microcrack geometry on macroscopic shear properties in brittle rocks under compression.
机译:提出了一种基于微机械的方法来预测压缩下脆性岩石的剪切失效。这种方法的制剂是基于改进的翼微裂纹模型,MoHR-Coulomb失败标准和微宏损伤模型。改进的翼微裂纹模型考虑了裂缝倾斜角度对岩石力学行为的影响。微米损伤模型描述了裂纹生长与轴向应变之间的关系。此外,解决了裂纹启动应力和限制压力之间的实验和理论关系,求解几乎无法测量的裂纹启动应力和限制压力,模型参数(即MU,A,SS和PHI)。细节讨论了裂纹倾斜角度,裂纹尺寸和摩擦系数对应力 - 应变关系,抗压强度,内部摩擦角,内聚,剪切失效平面角度和剪切强度的影响。找到最不利的裂缝角,这对应于岩石的最小抗压强度,内聚力,内摩擦角和剪切强度。通过公布的实验结果验证了理论结果的合理性。该方法提供了微裂纹几何形状对压缩下脆性岩石中宏观剪切性质的影响的理论预测。

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