The evolution and spatial distribution of internal random meso-porous structure are key problems in studying damage mechanism and macro-mechanical properties of concrete material under sulfate attack.X-ray tomography(CT)were used to scan the meso-damage process of concrete under sulfate attack.Based on this
combined with image processing and 3 Dreconstruction technology
the spatial distribution characteristics and evolution laws of pore in concrete was investigated using the proposed method of pore partitioning.The experimental results show that the concentration of Ca2+and Mg2+in the solution increased slowly.The compressive strength of concrete is closely related to its meso-pore structure under the coupling of sulfate attack and drying-wetting cycles.The evolution laws of pore in different regions of concrete specimen are different under the coupled effect of sulfate attack and drying-wetting cycles.Generally
the porosity increased after a slight decrease
and the corrosion depth increases with the corrosion time.There was a negative correlation between the uniaxial compressive strength and porosity.This study laid foundation for further research on meso-damage mechanism of concrete under sulfate attack.
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