33 records found
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Investigation of the changes in microstructure and transport properties of leached cement pastes accounting for mix composition
Microstructural characterization of ITZ in blended cement concretes and its relation to transport properties
Effect of limestone fillers on microstructure and permeability due to carbonation of cement pastes under controlled CO2 pressure conditions
Influence of the interfacial transition zone and interconnection on chloride migration of portland cement mortar
Influence of particle size on the early hydration of slag particle activated by Ca(OH)2 solution
Microstructural and permeability changes due to accelerated Ca leaching in ammonium nitrate solution
The ITZ microstructure, thickness and porosity in blended cementitious composite: Effects of curing age, water to binder ratio and aggregate content
Fractal and multifractal analysis on pore structure in cement paste
A versatile pore-scale multicomponent reactive transport approach based on lattice Boltzmann method: Application to portlandite dissolution
The effect of limestone powder addition on strength of slag blended cement
A preliminary numerical study on ITZ in cementitious composites
Effect of aggregate on chloride diffusivity of cement-based composite materials
A microscopic study on ternary blended cement based composites
Investigation on the interfacial transition zone in ternary blended cement based composites with respect to curing age and water binder ratio
Characterization of ITZ in ternary blended cementitious composites: Experiment and simulation
Numerical simulation of interfacial transition zone in ternary blended cement based composites
Effect of ITZ on durability of cement concrete exposed to chloride solutions
Influence of the interfacial transition zone on the chloride migration coeeficient of Portland cement concrete
Porosity characterization of ITZ in cementitious composites: Concentric expansion and overflow criterion
Determination of water permeability of cementitious materials using a controlled constant flow method