空隙率作为混合的一种定量测量方法——基于微CT分析的颗粒材料实例研究

IF 2.9 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
L. Vásárhelyi, D. Sebők, Imre Szenti, Ádám Tóth, Sára Lévay, R. Vajtai, Z. Kónya, Á. Kukovecz
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引用次数: 0

摘要

在几乎每个行业中,混合都是一个基本过程,但其3D分析在文献中很少。高分辨率计算机断层扫描(micro-CT)是研究颗粒物质混合的完美X射线成像工具。除了定性分析之外,3D显微CT图像还提供了定量分析的机会,这在混合过程的效率(时间和预算)和环境影响方面至关重要。在这项工作中,空隙性被提出作为混合的一种衡量标准。通过对重复显微CT测量的空隙率计算,可以在三维中给出混合的时间描述。与传统的混合指数不同,空隙率曲线提供了关于颗粒空间分布的额外信息。离散单元法也进行了模拟,并显示出与实验相似的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lacunarity as a quantitative measure of mixing—a micro-CT analysis-based case study on granular materials
In practically every industry, mixing is a fundamental process, yet its 3D analysis is scarce in the literature. High-resolution computed tomography (micro-CT) is the perfect X-ray imaging tool to investigate the mixing of granular materials. Other than qualitative analysis, 3D micro-CT images provide an opportunity for quantitative analysis, which is of utmost importance, in terms of efficiency (time and budget), and environmental impact of the mixing process. In this work, lacunarity is proposed as a measure of mixing. By the lacunarity calculation on the repeated micro-CT measurements, a temporal description of the mixing can be given in three dimensions. As opposed to traditional mixing indices, the lacunarity curve provides additional information regarding the spatial distribution of the grains. Discrete element method simulations were also performed and showed similar results to the experiments.
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CiteScore
3.60
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