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Progressive failure of brittle rocks with non-isometric flaws: Insights from acousto-optic-mechanical (AOM) data

机译:非等距缺陷的脆性岩石的渐进式失效:声光 - 机械(AOM)数据的见解

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Uniaxial compression tests combined with nondestructive testing techniques are performed to explore the roles of non-isometric flaws in crack developments in brittle rocks. The acoustic emission (AE) rate-process theory is adopted to analyze fracture-related AE event rate characteristics. The full-field optical method is applied to detect cracking modes. Experimental results show that AE activity is quite active when the matrix microcracking is dominant, while after each macrocracking event, AE activity becomes inactive because of the stress release. Multiphysical data for each tested flaw configuration faithfully confirm the rupture progressivity. The larger the flaw length ratio, the lower the peak stress (also peak axial strain and elastic modulus), as well as the more progressive the cracking process. Moreover, ultimate failure is triggered by the shear fracturing from the relatively long flaw. The short flaw is conditionally involved in ultimate failure when the stress buildup effect dominates. Finally, the fracture mechanism of brittle rocks with non-isometric flaws is revealed.
机译:单轴压缩试验与非破坏性测试技术相结合,以探讨非等距缺陷在脆性岩石中的裂纹发育中的作用。采用声发射(AE)率处理理论分析骨折相关的AE事件特征。施加全场光学方法以检测裂化模式。实验结果表明,当基质微裂纹所在的占主导地位时,AE活性非常有效,而在每个MacRacking事件之后,由于应力释放,AE活性变为无效。每个测试缺陷配置的多职数据忠实地证实了破裂的累进。缺陷长度越大,峰值应力越低(也峰值轴向应变和弹性模量),以及裂缝过程的渐进过程越多。此外,从相对较长的缺陷的剪切压裂触发最终失败。当压力累计效应主导时,短缺陷有条件地参与最终失败。最后,揭示了具有非等距缺陷的脆性岩石的断裂机制。

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