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- W189244311 abstract "Fresh model cement mixtures were simulated by SPACE, which is based on a dynamic mixing algorithm, because of the configuration-sensitivity of depercolation. Mixtures had the same w/c ratio and particle size distribution. Thereupon, they were hydrated by HYMOSTRUC 3D system. Boundary conditions were varied, rendering possible assessment of the influences of aggregate grains in concrete on the depercolation process accompanying maturation. Serial sectioning and image analysis was applied for that purpose. Simulation results revealed an increase in total porosity and in connected fraction of capillary pores due to the existence of aggregate grains. The various stages in the depercolation process were found related to total porosity, and to image resolution, but were also governed by the spatial distribution of capillary pores, and thus of the cement particles in the fresh state. This configuration-sensitivity declines during the depercolation process. Hence, simulation of hydrated cement pastes on the basis of HYMOSTRUC 3D simulations of the fresh particle state would generally lead to biased information, whereby the degree of bias will decline during the process. Thus, generation of approximate information on the correct value of the depercolation threshold can be expected only." @default.
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- W189244311 date "2006-01-01" @default.
- W189244311 modified "2023-09-25" @default.
- W189244311 title "On Connectivity of Porosity in Model Cement Paste" @default.
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- W189244311 doi "https://doi.org/10.1533/9780857093080.25" @default.
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