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Influence of microscale heterogeneity andmicrostructure on the tensile behavior of crystalline rocks

机译:微观非均质性和微观结构对晶体岩石拉伸性能的影响

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摘要

This study investigates the influence of microscale heterogeneity and microcracks on the failure behavior and mechanical response of a crystalline rock. The thin section analysis for obtaining the microcrack density is presented. Using micro X-ray computed tomography (μCT) scanning of failed laboratory specimens, the influence of heterogeneity and, in particular, biotite grains on the brittle fracture of the specimens is discussed and various failure patterns are characterized. Three groups of numerical simulations are presented, which demonstrate the role of microcracks and the influence of μCT-based and stochastically generated phase distributions. The mechanical response, stress distribution, and fracturing process obtained by the numerical simulations are also discussed. The simulation results illustrate that heterogeneity and microcracks should be considered to accurately predict the tensile strength and failure behavior of the sample.
机译:这项研究调查了微尺度异质性和微裂纹对晶体的破坏行为和力学响应的影响。提出了用于获得微裂纹密度的薄截面分析。使用显微X射线计算机断层摄影(μCT)扫描失败的实验室样本,讨论了异质性,尤其是黑云母晶粒对样本脆性断裂的影响,并描述了各种破坏模式。提出了三组数值模拟,它们演示了微裂纹的作用以及基于μCT的和随机生成的相分布的影响。还讨论了通过数值模拟获得的机械响应,应力分布和断裂过程。仿真结果表明,应考虑异质性和微裂纹来准确​​预测样品的拉伸强度和破坏行为。

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