The constitutive models of concrete often consider water desorption isotherms to be near-equilibrium and significantly affected by moderately high temperature, 40–80, typically through microstructural changes. However literature data suggest that adsorption, not desorption, is near-equilibrium and moderate temperatures do not cause microstructural changes. This work supports the latter theory, through dynamic vapor sorption experiments on cement paste at 20–80. Samples were pre-conditioned at 60% relative humidity and 20, and isotherms were measured for several humidity ranges and testing rates. The results, corroborated by classical DFT simulations, indicate that adsorption is near-equilibrium and mostly unaffected by temperature, whereas ...
Cement paste has a complex mesoscale structure, and small changes in its pore network potentially ca...
A new ability to quantitatively evaluate the complex pore system of cement pastes, using water sorpt...
Abstract: Motivated by the puzzle of sorption hysteresis in Portland cement concrete or cement paste...
The constitutive models of concrete often consider water desorption isotherms to be near-equilibrium...
Shrinkage can be critical for the strength and durability of drying cement pastes. Shrinkage becomes...
There is a significant need to understand, analyse and assess moisture transport in cementitious mat...
Water vapor sorption isotherms are essential data in models to predict the service life of the cemen...
Moisture diffusion and related fluid pressures play a key role in cracking and spalling of concrete ...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
The rate and extent of uptake and release of moisture are critical in controlling the behavior of ce...
Water vapor sorption isotherms are essential data in models to predict the service life of cement ba...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
The rate and extent of uptake and release of moisture are critical in controlling the behavior of ce...
The dimensional changes and the thermograms of cement specimens were determined during temperature c...
Cement paste has a complex mesoscale structure, and small changes in its pore network potentially ca...
A new ability to quantitatively evaluate the complex pore system of cement pastes, using water sorpt...
Abstract: Motivated by the puzzle of sorption hysteresis in Portland cement concrete or cement paste...
The constitutive models of concrete often consider water desorption isotherms to be near-equilibrium...
Shrinkage can be critical for the strength and durability of drying cement pastes. Shrinkage becomes...
There is a significant need to understand, analyse and assess moisture transport in cementitious mat...
Water vapor sorption isotherms are essential data in models to predict the service life of the cemen...
Moisture diffusion and related fluid pressures play a key role in cracking and spalling of concrete ...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
The rate and extent of uptake and release of moisture are critical in controlling the behavior of ce...
Water vapor sorption isotherms are essential data in models to predict the service life of cement ba...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
The rate and extent of uptake and release of moisture are critical in controlling the behavior of ce...
The dimensional changes and the thermograms of cement specimens were determined during temperature c...
Cement paste has a complex mesoscale structure, and small changes in its pore network potentially ca...
A new ability to quantitatively evaluate the complex pore system of cement pastes, using water sorpt...
Abstract: Motivated by the puzzle of sorption hysteresis in Portland cement concrete or cement paste...