New Definition of Ultrafine Particles in Mine Paste and Its Relationship with Rheological Properties

Author:

Xie Jincheng1,Qiao Dengpan1ORCID,Han Runsheng1,Deng Tao1,Wang Jun1

Affiliation:

1. Kunming University of Science and Technology, Kunming 650000, Yunnan, China

Abstract

Mine backfill paste is generally composed of tailings and coarse aggregates. In engineering practice, the definitions in fill material classification are vague. In this paper, the size range of ultrafine particles is defined by the Stokes sedimentation test and hydraulic coarseness method. The size range of ultrafine particles is affected not only by the geometric size of the particles but also by the physical characteristics of the particles themselves. This definition has more comprehensive considerations and stricter physical and mathematical significance than the traditional definition of ultrafine particles based only on size. There is a strong correlation between ultrafine particles in fill materials and the rheological properties of the mine backfill paste. In this study, through experiments and correlation analysis, it was found that the content of ultrafine particles is positively correlated with the plastic viscosity of the mine backfill paste, and its growth range is exponential. The coarse aggregate content is positively correlated with the yield stress of the mine backfill paste. A regression analysis model was established for the rheological properties of mine backfill paste. The model has few factors and high correlation, so it can simply and efficiently predict the rheological properties of mine backfill paste and guide engineering practice.

Publisher

Hindawi Limited

Subject

Civil and Structural Engineering

Reference11 articles.

1. Preliminary study on critical criteria of floc development and floc network development in cohesive fine sediment;Z. Zhu;Sediment Research,2009

2. Model test and field measurement of seepage characteristics of coarse and fine tailings dams;G. Yin;Chinese Journal of Rock Mechanics and Engineering,2010

3. Potential use of densified polymer-pastefill mixture as waste containment barrier materials

4. Rheology as a tool in concrete science: The use of rheographs and workability boxes

5. New definition of paste based on full tailings gradation;H. Wang;Journal of Central South University (Natural Science Edition),2014

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