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Investigation of cracking behavior and mechanism of sandstone specimens with a hole under compression

机译:压缩孔砂岩标本裂缝行为及机理研究

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摘要

In this paper, the cracking behaviour of rocks with a hole loaded in compression was investigated both experimentally and theoretically. First, a series of uniaxial compression tests on prismatic red sandstone specimens containing a circular or a rectangular hole were performed using a rock mechanics testing system in conjunction with digital image correlation (DIC) and acoustic emission (AE) systems. Afterwards, the theoretical solutions of stress for a circular and a rectangular hole under different stress conditions were solved by combining the complex variable method and the Box's complex algorithm. Experimental results show that the mechanical properties of rock specimens are significantly degraded by the hole and influenced by its shape. Crack evolution proceeds from primary tensile cracks through secondary tensile cracks and slabbing fractures to shear cracks, which can be visually displayed by the real-time deformation fields. The failure of specimens containing a hole under uniaxial loading is induced by the coalescence of the shear cracks and slabbing fracturing zones. Besides, several critical stresses associated with cracking behaviour were estimated based on a proposed method and the AE measurement. Theoretical investigation indicates that both hole shape and lateral stress ratio are important factors influencing the stress distribution, and the initiation mechanisms of different cracks can be well revealed according to the stress states around the holes under uniaxial compressive loads.
机译:在本文中,在实验和理论上研究了压缩中孔的岩石的开裂行为。首先,使用岩石力学测试系统与数字图像相关(DIC)和声发射(AE)系统一起进行含有圆形或矩形孔的棱镜红色砂岩样品上的一系列单轴压缩试验。之后,通过组合复数可变方法和盒的复杂算法来解决不同应力条件下圆形和矩形孔的应力和矩形孔的理论解。实验结果表明,岩石标本的机械性能明显地由孔劣化并受其形状的影响。裂纹进化通过次级拉伸裂缝通过次级拉伸裂缝和斜纹裂缝进行剪切裂缝,这可以通过实时变形场视觉上显示。通过剪切裂缝的聚结诱导单轴载荷下含有孔的试样的失败诱导。此外,基于所提出的方法和AE测量估计与裂化行为相关的几个临界应力。理论研究表明,孔形和横向应力比是影响应力分布的重要因素,并且可以根据单轴压缩载荷下的孔周围的应力状态揭示不同裂缝的起始机制。

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