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首页> 外文期刊>International journal of geomechanics >Shape Characterization of Fragmented Sand Grains via X-Ray Computed Tomography Imaging
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Shape Characterization of Fragmented Sand Grains via X-Ray Computed Tomography Imaging

机译:X射线计算机断层扫描成像技术对碎片状沙粒的形状表征

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摘要

The mechanical and hydraulic properties of granular materials are fundamentally affected by the grain size and shape. Three samples of uniformly graded quartz sand with different size ranges were subjected to one-dimensional compression tests up to 40 MPa to fracture the sand into fragments with a variety of sizes and shapes. X-ray computed tomography was used to obtain the morphology of the crushed sand at a resolution of 2.8 mu m. A practical divide and stitch method was proposed and implemented to automatically separate and extract individual grains for morphological analysis. This method can reduce the misidentification of grains and voids. Scans of 5,481 grains were used to quantify the three-dimensional morphological properties of grains of different sizes and shapes. The shape descriptors of elongation, flatness, and sphericity were the best way to describe the grain shape. The intermediate Feret diameter was the best parameter for characterizing the grain size. The smaller fragments from the crushed sand were more elongated and had higher flatness and convexity. The distributions of elongation, flatness, sphericity, and convexity for grains in different size ranges followed a normal distribution. The standard deviation in the grain shape descriptors increased for the small grain sizes. The volume and surface area of the grains can be predicted with high confidence using elongation, flatness, and intermediate Feret diameter. Convexity needs to be used along with elongation and flatness to estimate sphericity reliably.
机译:颗粒材料的机械和水力性质从根本上受晶粒尺寸和形状的影响。对三个具有不同尺寸范围的均匀梯度石英砂样品进行了高达40 MPa的一维压缩测试,以将砂破碎成具有各种尺寸和形状的碎片。用X射线计算机断层摄影术以2.8μm的分辨率获得碎砂的形态。提出并实施了一种实用的分割和缝合方法,以自动分离和提取单个谷物进行形态分析。这种方法可以减少对晶粒和空隙的错误识别。扫描了5,481个晶粒,以量化不同尺寸和形状的晶粒的三维形态特性。伸长率,平面度和球形度的形状描述符是描述晶粒形状的最佳方法。中等的费雷特直径是表征晶粒尺寸的最佳参数。碎砂产生的较小碎片更细长,平坦度和凸度更高。不同尺寸范围的晶粒的伸长率,平面度,球形度和凸度分布遵循正态分布。对于小晶粒尺寸,晶粒形状描述符的标准偏差增加。可以使用伸长率,平面度和中等费雷特直径来高度可靠地预测晶粒的体积和表面积。凸度需要与伸长率和平坦度一起使用,以可靠地估计球形度。

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