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Spatial variation of void ratio and shear band thickness in sand using X-ray computed tomography

机译:X射线计算机断层摄影术中砂洞的空隙率和剪切带厚度的空间变化

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摘要

A detailed study of spatial variation of void ratio and shear band thickness measurements is presented in this paper. A prismatic sand specimen that initially measured 57·4 mm wide ×120·5 mm long × 182·1 mm high was sheared under plane-strain (biaxial) loading conditions. The specimen was prepared at a relative density of 79% using F-75 Ottawa sand. X-ray computed tomography was used to scan the specimen before shearing and after the onset of the shear band. The specimen failed through a single shear band with an inclination angle of 65·6° measured from the direction of the minor principal stress. Computer algorithms were developed to calibrate CT images and quantify void ratio (e) variation within the specimen. CT data analysis revealed cross-sectional spatial variation in void ratio where density is higher in regions close to the edges of the specimen due to membrane effects and confining pressure with no significant variation in void ratio in the axial direction (top to bottom) before shearing. The shear band was easily identified from the CT images, and analysis of void ratio showed a noticeable jump in void ratio profile across the shear band. A detailed statistical summary of the thickness -of the shear band and variation of void ratio across the shear band is presented and discussed.
机译:本文提出了孔隙比的空间变化和剪切带厚度测量的详细研究。在平面应变(双轴)加载条件下剪切了最初尺寸为57·4 mm宽×120·5 mm长×182·1 mm高的棱形砂试样。使用F-75渥太华砂以79%的相对密度制备样品。在剪切之前和剪切带开始之后,使用X射线计算机断层摄影术扫描样品。从次要主应力方向测得的倾斜角度为65·6°的单个剪切带破坏了试样。开发了计算机算法来校准CT图像并量化样品中的空隙率(e)变化。 CT数据分析显示空隙率的横截面空间变化,其中由于膜效应和围压,靠近试样边缘的区域密度较高,剪切前轴向(上下)的空隙率没有明显变化。剪切带很容易从CT图像中识别出来,空隙率的分析表明空隙率分布在整个剪切带上有明显的跳跃。给出并讨论了剪切带厚度和整个剪切带空隙率变化的详细统计摘要。

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