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Study on mechanical properties of porous rock by CT technique

机译:CT技术多孔岩石力学性能研究

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In order to accomplish on-line observation when CT scanning and disclose the evolution rules of microscopic porous structure and cracks propagation of porous rock under loading conditions, a set of CT loading device had been developed by ourselves. Using the CT loading device and CT scanning technology, the Brazil split tests of porous rock were carried out. The evolutionary laws of porous structures of rock were observed and analyzed during a split. The intrinsic mechanisms of split failure in porous rock are revealed. The results show that the macroscopic failure properties of rock feature obvious elastic and brittleness that are independent of the quantity and distribution of pores during a split. On the contrary, the change of inner porous structures and response of stress state tightly depend on the distribution properties and geometric deformations of pores. With the porosity increase, the split cracks deviate from lengthways symmetry axis and the partial pores present visibly irreversible deformation.
机译:为了在CT扫描和公开微观多孔结构的演化规律时实现在线观察,并在负载条件下裂解多孔岩石的裂缝,我们自己开发了一组CT装载装置。使用CT装载装置和CT扫描技术,进行了多孔岩石的巴西分离试验。在分裂过程中观察和分析了岩石多孔结构的进化规律。揭示了多孔岩石中分裂失败的内在机制。结果表明,岩石的宏观故障特性具有明显的弹性和脆性,它们在分裂过程中独立于孔的数量和分配。相反,内部多孔结构的变化和应力状态的响应紧密地取决于孔的分布特性和几何变形。随着孔隙率的增加,分流裂缝偏离宽度对称轴和呈现明显不可逆变形的部分孔隙。

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