4.7 Article

Fractal breakage of porous carbonate sand particles: Microstructures and mechanisms

Journal

POWDER TECHNOLOGY
Volume 363, Issue -, Pages 112-121

Publisher

ELSEVIER
DOI: 10.1016/j.powtec.2020.01.007

Keywords

Carbonate sands; In situ tomography; Intra-granular pores; Fractal breakage; Cleavage

Funding

  1. NSFC [11802252, 11627901]
  2. National Key RAMP
  3. DProgramof China [2017YFB0702002]
  4. Scientific Challenge Project of China [TZ2018001]
  5. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences [DE-AC02-06CH11357]

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In situ, three-dimensional (3D) characterizations of particle breakage in porous carbonate sands are presented, for the first time, with synchrotron-based micro computed tomography. Evolution of grain-scale characteristics are identified and quantified via elaborate image processing and topology analyses. The sequential 3D images reveal distinctly different fracture mechanisms for carbonate sands from silica sands. The angular shape of carbonate sand particles facilitates bending fracture, and particles with a lower sphericity and a higher porosity are more prone to break. 3D crack networks extracted from fractured particles imply considerable cleavage along initial pores. The fractal dimension of crack networks increases with external loading due to crack branching via cleavage. The resultant fragment size distribution also appears fractal and the fractal feature is valid down to the breakage limit of calcium carbonate. Crack propagation along the initial pores reduces the energy barrier for particle breakage and thus fracture strength of particles. (c) 2020 Elsevier B.V. All rights reserved.

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