A two-step scheme is presented for estimating the chloride diffusivity of pure cement paste. In the scheme, gel pores are included in the solid skeleton, composed of calcium hydroxide, unhydrated cement and calcium silicate hydrate, while capillary pores and the solid skeleton constitute pure cement paste. In combination with percolation theory, the effective medium method was modified to formulate the chloride diffusivities of the solid skeleton and pure cement paste sequentially. Detailed analysis was conducted to calibrate the percolation exponent for the high-diffusivity phase and the chloride diffusivity of the pore solution. Comparisons with various test results were made to verify the proposed scheme. Unlike existing analytical methods, the physical properties, volume fractions and morphological relationships of various phase constituents and the shapes, percolation behaviour and different roles of gel and capillary pores are all taken into account simultaneously. The calibrated chloride diffusivity of the pore solution was found to be considerably close to that derived by molecular dynamics simulation, suggesting that the scheme represents a more realistic pure cement paste. The scheme can reasonably evaluate the chloride diffusivity of pure cement paste at medium and long curing ages.
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August 2022
Research Article|
June 20 2022
Chloride diffusivity of pure cement paste
Xin-Zhu Zhou;
Xin-Zhu Zhou
Professor, School of Civil Engineering, Zhejiang University of Technology, Hangzhou, P. R. China
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Hua Rong;
Hua Rong
Professor of Engineering, Research Department of Science and Technology, Central Research Institute of Building and Construction, Metallurgical Group Corporation of China, Beijing, P. R. China
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Jian-Jun Zheng;
Jian-Jun Zheng
Professor, School of Civil Engineering, Zhejiang University of Technology, Hangzhou, P. R. China (corresponding author: jjzheng@zjut.edu.cn)
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Bin Zeng
Bin Zeng
Professor of Engineering, Research Department of Science and Technology, Central Research Institute of Building and Construction, Metallurgical Group Corporation of China, Beijing, P. R. China
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Publisher: Emerald Publishing
Received:
April 07 2021
Accepted:
April 20 2022
Online ISSN: 1751-7605
Print ISSN: 0951-7197
ICE Publishing: All rights reserved
2022
Advances in Cement Research (2022) 34 (8): 371–378.
Article history
Received:
April 07 2021
Accepted:
April 20 2022
Citation
Zhou X, Rong H, Zheng J, Zeng B (2022), "Chloride diffusivity of pure cement paste". Advances in Cement Research, Vol. 34 No. 8 pp. 371–378, doi: https://doi.org/10.1680/jadcr.21.00029
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