Three-Dimensional Modeling of Transport Properties in Hardened Cement Paste Using Metal Centrifugation-Based Pore Network

Author:

Liu Cheng1,Qian Rusheng2,Liu Guojian3,Zhang Mingzhong4,Zhang Yunsheng5

Affiliation:

1. Ph.D. Student, School of Materials and Science Engineering, Southeast Univ., Nanjing 211189, China; Dept. of Civil, Environmental and Geomatic Engineering, Univ. College London, London WC1E 6BT, UK.

2. Ph.D. Student, School of Materials and Science Engineering, Southeast Univ., Nanjing 211189, China.

3. Assistant Professor, School of Civil Engineering, Suzhou Univ. of Science and Technology, Suzhou 215011, China.

4. Associate Professor, Dept. of Civil, Environmental and Geomatic Engineering, Univ. College London, London WC1E 6BT, UK.

5. Professor, School of Materials and Science Engineering, Southeast Univ., Nanjing 211189, China; Key Laboratory of Disaster Prevention and Mitigation in Civil Engineering of Gansu Province, Lanzhou Univ. of Technology, Lanzhou 730050, China (corresponding author).

Publisher

American Society of Civil Engineers (ASCE)

Subject

Mechanics of Materials,General Materials Science,Building and Construction,Civil and Structural Engineering

Reference70 articles.

1. Modelling the diffusivity of mortar and concrete using a three-dimensional mesostructure with several aggregate shapes

2. A combined SEM–Calorimetric approach for assessing hydration and porosity development in GGBS concrete

3. Numerical simulations of permeability of plain and blended cement pastes

4. Effect of temperature on porosity and on chloride diffusion in cement pastes

5. Desbois, G., S. Hemes, B. Laurich, E. Houben, J. Klaver, N. Hoehne, J. Urai, G. Viggiani, and P. Bésuelle. 2016. Investigation of microstructures in naturally and experimentally deformed reference clay rocks using innovative methods in scanning electron microscopy. Chantilly, VA: Clay Minerals Society. https://doi.org/10.1346/CMS-WLS-21.1.

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