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Characteristic Stress Levels and Brittle Fracturing of Hard Rocks Subjected to True Triaxial Compression with Low Minimum Principal Stress

机译:具有低最低主应力的真正三轴压缩的硬岩的特征应力水平和脆性压裂

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In this study, true triaxial compression tests were carried out on three types of hard rocks (i.e., granite, marble and sandstone) using rectangular prismatic specimens (50?×?50?×?100 mm_(3)) with low minimum principal stress σ ~(3), and various intermediate principal stresses σ ~(2). The main purposes were to establish the relationship between the characteristic stress levels (i.e., crack initiation stress, crack damage stress and peak stress) and the corresponding principal stresses and to investigate the brittle fracturing process of hard rocks near excavation boundaries. The test results indicated that the stress–strain curves were primarily characterized by the linear-elastic–brittle behavior. The failure planes of the specimens in the tests were found to be adjacent to the σ ~(3)loading surface, and almost parallel to the σ ~(1)– σ ~(2)plane, which were analogous to the spalling of the surrounding rock. With the aid of scanning electron microscopy, it was shown that cleavage fractures accounted for the majority of the fracture morphology in the sandstone specimens. Two revised methods were developed to determine the crack initiation stress of hard rocks under true triaxial compression, and these characteristic stress levels could be appropriately fitted by utilizing both the parabolic and power functions. Although the power function achieved better fitting results, the parameters in the parabolic function could be associated with the tensile cracks induced during the loading process. The influence of intermediate principal stress on the strength, deformation and failure was significant. In addition, the brittle fracturing process could be illustrated by the crack-induced strains in three principal stress directions.
机译:在这项研究中,使用矩形棱镜样品(50Ω×50?×100mm_(3)),在三种类型的硬岩(即花岗岩,大理石和砂岩)上进行真正的三轴压缩试验,具有低最小主应力σ〜(3),各种中间主应力σ〜(2)。主要目的是建立特征应力水平(即裂纹启动应力,裂纹损伤应力和峰值应力)之间的关系以及相应的主应力,并研究了挖掘边界附近硬岩的脆性压裂过程。测试结果表明应力 - 应变曲线主要是通过线性弹性脆性的特征。发现试验中标本的故障平面与σ〜(3)负载表面相邻,几乎平行于σ〜(1) - σ〜(2)平面,它们类似于倒置围岩。借助于扫描电子显微镜检查,表明裂解骨折占砂岩样本中大部分骨折形态。开发了两种修订的方法以确定真正的三轴压缩下硬岩的裂纹启动应力,并且可以通过利用抛物线和功率功能来适当地安装这些特征应力水平。尽管功率函数实现了更好的拟合结果,但抛物线功能中的参数可以与装载过程中引起的拉伸裂缝相关联。中间主应力对强度,变形和失效的影响是显着的。另外,脆性压裂过程可以通过裂缝诱导的三个主应力方向来说明。

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