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Algorithms for 3D Particles Characterization Using X-Ray Microtomography in Proppant Crush Test

机译:支撑剂压碎试验中使用X射线显微断层摄影术表征3D颗粒的算法

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We present image processing algorithms for a new technique of ceramic proppant crush resistance characterization. To obtain the images of the proppant material before and after the test we used X-ray microtomography. We propose a watershed-based unsupervised algorithm for segmentation of proppant particles, as well as a set of parameters for the characterization of 3D particle size, shape, and porosity. An effective approach based on central geometric moments is described. The approach is used for calculation of particles’ form factor, compactness, equivalent ellipsoid axes lengths, and lengths of projections to these axes. Obtained grain size distribution and crush resistance fit the results of conventional test measured by sieves. However, our technique has a remarkable advantage over traditional laboratory method since it allows to trace the destruction at the level of individual particles and their fragments; it grants to analyze morphological features of fines. We also provide an example describing how the approach can be used for verification of statistical hypotheses about the correlation between particles’ parameters and their crushing under load.
机译:我们提出了一种用于陶瓷支撑剂抗压强度表征新技术的图像处理算法。为了获得测试之前和之后支撑剂材料的图像,我们使用了X射线显微断层扫描。我们提出了一种基于分水岭的无监督支撑剂颗粒分割算法,以及一组用于表征3D粒度,形状和孔隙度的参数。描述了一种基于中心几何矩的有效方法。该方法用于计算粒子的形状系数,紧密度,等效椭圆轴的长度以及到这些轴的投影长度。获得的粒度分布和抗压碎性符合通过筛子测量的常规测试的结果。但是,与传统的实验室方法相比,我们的技术具有明显的优势,因为它可以追踪单个颗粒及其碎片水平的破坏。它可以分析罚款的形态特征。我们还提供了一个示例,描述了如何将该方法用于验证关于粒子参数与其在载荷作用下的破碎之间的相关性的统计假设。

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