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首页> 外文期刊>Journal of Engineering Mechanics >3D Digital Analysis of Cracking Behaviors of Rocks through 3D Reconstruction Model under Triaxial Compression
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3D Digital Analysis of Cracking Behaviors of Rocks through 3D Reconstruction Model under Triaxial Compression

机译:三轴压缩下三维重建模型岩石开裂行为的3D数字分析

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摘要

The cracking behaviors of rocks significantly affect their mechanical properties. In this paper, a digital analysis approach with X-ray Computed Tomography (CT) imagery is developed to investigate the cracking and mechanical behaviors of rocks. The damage ratio, integrity, and porosity of rocks subjected to triaxial compression are firstly defined based on X-ray CT image and the pixel coordinate system. Then, the evolution process of two-dimensional (2D) and three-dimensional (3D) cracks are studied via 2D CT images and reconstructed 3D fracture models, respectively. Finally, the stress-strain relationship of rocks is simulated by converting the reconstructed models to the finiteelement (FE) models. The results show that the rock damage ratio, integrity, and porosity are good factors to describe the cracking behaviors, in which the evolution process of cracks is divided into five stages including: (1) the compaction of initial fissures; (2) the initiation and propagation of microcracks; (3) microcracks coalescence, i.e., the formation and stable propagation of macrocracks; (4) the unstable propagation of macrocracks; and (5) the complete failure of rock samples. The numerical stress-strain curves are in good agreement with the experiment data.
机译:岩石的开裂行为显着影响其机械性能。本文开发了一种具有X射线计算机断层扫描(CT)图像的数字分析方法,以研究岩石的开裂和机械行为。基于X射线CT图像和像素坐标系首先定义经受三轴压缩的岩石的损伤比,完整性和孔隙率。然后,通过2D CT图像和重建的3D断裂模型研究二维(2D)和三维(3D)裂缝的演化过程。最后,通过将重建模型转换为有限元(FE)模型来模拟岩石的应力 - 应变关系。结果表明,岩石损伤率,完整性和孔隙度是描述裂缝行为的良好因素,其中裂缝的演化过程分为五个阶段,包括:(1)初始裂缝的压实; (2)微裂纹的启动和传播; (3)微裂纹聚结,即MacRecracks的形成和稳定繁殖; (4)MacRecracks的不稳定传播; (5)岩石样品的完全失败。数值应力 - 应变曲线与实验数据吻合良好。

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