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Experimental Determination of Crack Initiation and Crack Damage of Two Granites

机译:两种花岗岩裂纹启动和裂纹损伤的实验测定

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Mineralogical composition and microstructural features influence rock strength and their failure mechanisms. Crack initiation (CI) and crack damage (CD) are important processes of the failure mechanisms of rocks. Since CI is the lower limit of the long term strength of rocks at low confinement, this study is mainly concerned with triaxial tests and the determination of CI and CD using different methods. A triaxial cell has been designed to examine spalling behavior of magmatic rocks under low confinement, at minor principal stresses up to 2.5 MPa. Two granites with different grain sizes were tested. Methods to determine CI and CD include the calculation of circumferential, volumetric and crack volumetric strain. In addition, acoustic emission monitoring provides the onset of CI and CD. Uniaxial compressive tests including primary wave velocity measurements as well as acoustic emission were used to supplement the dataset. The wave velocities also give an indirect determination of CI and CD as the initiation of cracks reduces the speed of the waves. This study aims to compare the different methods determining CI and CD and to connect the results with mineralogical and microstructural features. Orientated thin sections were prepared to identify the mineralogical composition. Furthermore, the growing influence of confining pressure from 0.1 to 2.5 MPa on rock strength was analyzed.
机译:矿物学组成和微观结构特征影响岩体强度及其失效机制。裂纹启动(CI)和裂纹损伤(CD)是岩石故障机制的重要过程。由于CI是低限制的岩石长期强度的下限,本研究主要涉及三轴试验和使用不同方法的CI和Cd的测定。设计了一个三轴电池,用于在低限制下检查岩浆岩石的剥落行为,在较小的主应力高达2.5MPa。测试了两种具有不同谷物尺寸的花岗岩。确定CI和CD的方法包括圆周,体积和裂纹体积菌株的计算。此外,声发射监测提供了CI和CD的发作。单轴压缩测试包括主波速度测量以及声发射来补充数据集。由于裂缝的启动降低了波浪的启动,因此波速也给出了CI和CD的间接测定。本研究旨在比较确定CI和CD的不同方法,并将结果与​​矿物学和微观结构特征进行连接。制备定向薄切片以鉴定矿物学组合物。此外,分析了在岩石强度0.1至2.5MPa的狭窄压力影响的影响。

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