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首页> 外文期刊>Theoretical and Applied Fracture Mechanics >3-D X-ray computed tomography on failure characteristics of rock-like materials under coupled hydro-mechanical loading
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3-D X-ray computed tomography on failure characteristics of rock-like materials under coupled hydro-mechanical loading

机译:3-D X射线计算机断层扫描关于耦合水力机械负载下的岩状材料的故障特性

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In this article, influences of confining pressures and internal fluid pressures on fracture behavior in rock-like materials subjected to both mechanical loads and internal hydraulic pressures is experimentally studied using the 3-D X-ray computed tomography combined with 3-D reconstruction techniques. Six different types of the pre-cracked rock-like specimens subjected to different confining pressures and internal fluid pressures are first conducted using a rock mechanics testing system. Then, the broken pre-flawed rock-like specimens are analyzed using a 3-D X-ray computed tomography (CT) scanning system. Subsequently, the internal damage behavior of failed pre-flawed rock-like specimens is evaluated by the 3-D reconstruction techniques, according to the horizontal and vertical cross-sectional CT images. The experimental results demonstrate that the peak strengths of pre-cracked rock-like specimens in the triaxial compression with fixed confining pressures decrease as the internal fluid pressures increases. On the other hand, when the internal fluid pressures are fixed, peak strengths of pre-cracked rock-like specimens in the triaxial compression increase with increasing the confining pressures. Furthermore, the 3-D X-ray Computed Tomography technique provides that the ultimate 3-D internal failure mode in pre-cracked rock-like specimens under the hydro-mechanical loading conditions are affected by both confining pressures and internal fluid pressures. Influences of confining and internal fluid pressures on the crack areas, crack aperture extent and the fractal dimension of 3-D fragments are investigated to reveal the coupled hydro-mechanical fracturing mechanism. In addition, the Scanning Electron Microscope (SEM) observations illustrate that the fracture surface roughness in the regions of crack initiation at the microscale decreases as the internal fluid pressures increases.
机译:在本文中,使用基于3-D重建技术的3-D X射线计算机断层扫描,通过与三维重建技术进行了实验研究了限制压力和内部流体压力对机械负载和内部液压的裂缝行为的影响。首先使用岩石力学检测系统首先进行六种不同类型的预裂纹岩样试验和内部流体压力。然后,使用3-D X射线计算机断层扫描(CT)扫描系统分析破碎的预缺陷岩样标本。随后,根据水平和垂直横截面CT图像,通过3-D重建技术评估失败的预缺陷岩样标本的内部损伤行为。实验结果表明,随着内部流体压力的增加,具有固定狭窄压力的三轴压缩中的预裂纹岩样标本的峰强度降低。另一方面,当内部流体压力是固定的时,在三轴压缩中预破裂的岩状样品的峰强度随着狭窄的压力而增加。此外,3-D X射线计算机断层摄影技术规定,在水力机械负载条件下预破裂的岩样标本中的最终3-D内部故障模式受狭窄压力和内部流体压力的影响。研究了限制和内部流体压力对裂缝区域,裂纹孔径和3d片段分形尺寸的影响,揭示了耦合的水力机械压裂机制。另外,扫描电子显微镜(SEM)观察结果说明,随着内部流体压力的增加,微观尺度的裂纹引发区域中的断裂表面粗糙度降低。

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