The influences of the sand–cement (s/c) ratio and microstructure on the water permeability of cement mortar were examined. Laboratory experiments were carried out to study the influence of the s/c ratio on the seepage failure of cement mortar. The results showed that the contacts of aggregate grains can be divided into three types – wrapped contacts, surface contacts and point contacts. The relationships among water permeability, porosity and wave velocity of cement mortar were also investigated and it was found that the permeability coefficient of cement mortar increases exponentially with an increase in the s/c ratio. It was also found that there is a critical s/c ratio range (around 5–6), at which the porosity and wave velocity change remarkably. When the critical s/c ratio is exceeded, the critical seepage pressure is reached and seepage failure occurs. The relationship between the permeability coefficient and the critical seepage pressure was found to be a power function.
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July 2022
Research Article|
July 01 2022
Laboratory investigation of the permeability properties of cement mortar with different sand–cement ratios Available to Purchase
Liangliang Lu;
Liangliang Lu
PhD candidate, Jiangsu Key Laboratory of Urban Underground Engineering & Environmental Safety, Southeast University, Nanjing, P.R. China
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Shuyun Zhu;
Shuyun Zhu
Professor, School of Resources and Geosciences, China University of Mining and Technology, Xuzhou, P.R. China
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Zhibin Liu
Zhibin Liu
Associate Professor, Jiangsu Key Laboratory of Urban Underground Engineering & Environmental Safety, Southeast University, Nanjing, P.R. China (corresponding author: seulzb@seu.edu.cn)
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Publisher: Emerald Publishing
Received:
June 19 2021
Accepted:
May 09 2022
Online ISSN: 1751-7605
Print ISSN: 0951-7197
ICE Publishing: All rights reserved
2022
Advances in Cement Research (2022) 34 (7): 292–300.
Article history
Received:
June 19 2021
Accepted:
May 09 2022
Citation
Lu L, Zhu S, Liu Z (2022), "Laboratory investigation of the permeability properties of cement mortar with different sand–cement ratios". Advances in Cement Research, Vol. 34 No. 7 pp. 292–300, doi: https://doi.org/10.1680/jadcr.21.00111
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