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首页> 外文期刊>Rock Mechanics and Rock Engineering >Pre-Peak and Post-Peak Rock Strain Characteristics During Uniaxial Compression by 3D Digital Image Correlation
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Pre-Peak and Post-Peak Rock Strain Characteristics During Uniaxial Compression by 3D Digital Image Correlation

机译:3D数字图像相关性在单轴压缩过程中的预峰值和后峰值岩石应变特性

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摘要

A non-contact optical method for strain measurement applying three-dimensional digital image correlation (3D DIC) in uniaxial compression is presented. A series of monotonic uniaxial compression tests under quasi-static loading conditions on Hawkesbury sandstone specimens were conducted. A prescribed constant lateral-strain rate to control the applied axial load in a closed-loop system allowed capturing the complete stress-strain behaviour of the rock, i.e. the pre-peak and post-peak stress-strain regimes. 3D DIC uses two digital cameras to acquire images of the undeformed and deformed shape of an object to perform image analysis and provides deformation and motion measurements. Observations showed that 3D DIC provides strains free from bedding error in contrast to strains from LVDT. Erroneous measurements due to the compliance of the compressive machine are also eliminated. Furthermore, by 3D DIC technique relatively large strains developed in the post-peak regime, in particular within localised zones, difficult to capture by bonded strain gauges, can be measured in a straight forward manner. Field of strains and eventual strain localisation in the rock surface were analysed by 3D DIC method, coupled with the respective stress levels in the rock. Field strain development in the rock samples, both in axial and shear strain domains suggested that strain localisation takes place progressively and develops at a lower rate in pre-peak regime. It is accelerated, otherwise, in post-peak regime associated with the increasing rate of strength degradation. The results show that a major failure plane, due to strain localisation, becomes noticeable only long after the peak stress took place. In addition, post-peak stress-strain behaviour was observed to be either in a form of localised strain in a shearing zone or inelastic unloading outside of the shearing zone.
机译:提出了一种用于在单轴压缩中应用三维数字图像相关(3D DIC)的应变测量的非接触式光学方法。进行了一系列鹰克斯伯里砂岩标本的准静态装载条件下的单调单轴压缩试验。规定的恒定横向应变速率,以控制闭环系统中的施加的轴向载荷允许捕获岩石的完全应力 - 应变行为,即预峰值和后峰值应力 - 应变制度。 3D DIC使用两个数码相机获取物体的未变形和变形形状的图像,以执行图像分析并提供变形和运动测量。观察结果表明,3D DIC提供与来自LVDT的菌株相比没有床上用品误差的菌株。还消除了由于压缩机的符合而导致的错误测量。此外,通过3D DIC技术在后峰值状态下产生的相对大的菌株,特别是在局部区域内,难以通过粘结的应变仪捕获,可以以直接的方式测量。通过3D DIC方法分析岩体中菌株和最终应变定位的领域,与岩石中的相应应力水平相结合。岩石样品中的场应变发育,轴向和剪切应变域中的岩石样本表明,在预峰值方案中以较低的速度逐步进行,在较低的速率下进行级别。否则,在与增加的强度降解速率增加相关的后峰值方案中,它被加速。结果表明,由于应变局部化而导致的重大故障平面仅在峰值压力发生后的时间内变得明显。另外,观察到后峰值应力 - 应变行为以剪切区的剪切区或内部卸载的局部应变的形式。

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