4.7 Article

Experimental investigation on the relationship between pore characteristics and unconfined compressive strength of cemented paste backfill

期刊

CONSTRUCTION AND BUILDING MATERIALS
卷 179, 期 -, 页码 254-264

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.conbuildmat.2018.05.224

关键词

Cemented paste backfill; Nuclear magnetic resonance; Pore characteristics; Unconfined compressive strength

资金

  1. National Natural Science Foundation of China [51504182, 51674188, 51405381, 51404191]
  2. Natural Science Basic Research Plan of Shaanxi Province of China [2015JQ5187]
  3. Scientific Research Program - Shaanxi Provincial Education Department [15JK1466]
  4. China Postdoctoral Science Foundation [2015M582685]
  5. Outstanding Youth Science Fund of Xi'an University of Science and Technology [2018YQ2-01]
  6. National Research Council of Science AMP
  7. Technology (NST) grant by the Korea government (MSIP) [CRC-16- 38502-KICT]

向作者/读者索取更多资源

In this paper, the pore structure characteristics of CPB specimens were characterized using nuclear magnetic resonance (NMR) and scanning electronic microscopy (SEM) techniques, and the relationship between the unconfined compressive strength (UCS) and the pore characteristics of cemented paste backfill (CPB) was investigated. The results showed that the pores in CPB specimens were mainly small, non-damaging ones, which accounted for about 70 vol% of all pores in CPB specimens. Although the damaging and multi-damaging pores only accounted for 3.93 vol% and 6.99 vol% of all pores respectively, they had significant impacts on the UCS of CPB specimens. With the increase of curing time, the porosity of CPB specimens decreased gradually (i.e. the average porosities of CPB specimens at the curing time of 3 d, 14 d and 28 d were 11.07 vol%, 8.58 vol% and 7.09 vol%, respectively). Besides, the porosity of CPB specimens also decreased with the increase of solid concentration of CPB slurry. On the basis of fitting analysis, it could be observed that there was a negatively exponential relationship between the UCS and the porosity of CPB specimens and a linearly inverse relationship between the UCS and the fractal dimension. Our study demonstrates that it is feasible to study the relationship between mechanical properties and pore characteristics of CPB specimens by using the NMR technique. (C) 2018 Elsevier Ltd. All rights reserved.

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