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晶粒尺寸分形颗粒材料的孔隙结构

Pore Structure of Grain-Size Fractal Granular Material.

作者信息

Liu Yifei, Jeng Dong-Sheng

机构信息

School of Civil Engineering, Southwest Jiaotong University, Chengdu 610031, China.

School of Engineering & Built Environments, Griffith University Gold Coast Campus, Gold Coast, QLD 4222, Australia.

出版信息

Materials (Basel). 2019 Jun 26;12(13):2053. doi: 10.3390/ma12132053.

Abstract

Numerous studies have proven that natural particle-packed granular materials, such as soil and rock, are consistent with the grain-size fractal rule. The majority of existing studies have regarded these materials as ideal fractal structures, while few have viewed them as particle-packed materials to study the pore structure. In this study, theoretical analysis, the discrete element method, and digital image processing were used to explore the general rules of the pore structures of grain-size fractal granular materials. The relationship between the porosity and grain-size fractal dimension was determined based on bi-dispersed packing and the geometric packing theory. The pore structure of the grain-size fractal granular material was proven to differ from the ideal fractal structure, such as the Menger sponge. The empirical relationships among the box-counting dimension, lacunarity, succolarity, grain-size fractal dimension, and porosity were provided. A new segmentation method for the pore structure was proposed. Moreover, a general function of the pore size distribution was developed based on the segmentation results, which was verified by the soil-water characteristic curves from the experimental database.

摘要

大量研究已证明,诸如土壤和岩石等天然颗粒填充的粒状材料符合粒度分形规则。现有的大多数研究都将这些材料视为理想的分形结构,而很少将它们视为颗粒填充材料来研究孔隙结构。在本研究中,采用理论分析、离散元法和数字图像处理来探索粒度分形粒状材料孔隙结构的一般规律。基于双分散堆积和几何堆积理论确定了孔隙率与粒度分形维数之间的关系。结果表明,粒度分形粒状材料的孔隙结构不同于理想分形结构,如门格尔海绵。给出了盒维数、空隙率、凹陷度、粒度分形维数和孔隙率之间的经验关系。提出了一种新的孔隙结构分割方法。此外,基于分割结果建立了孔径分布的通用函数,并通过实验数据库中的土水特征曲线进行了验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80b1/6651105/589f7301dfa3/materials-12-02053-g001.jpg

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