Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution controls the hysteresis of water sorption isotherms and associated bulk dimensional changes (shrinkage). We focus on two locations of evaporable water within the fine structure of pastes, each having unique properties, and we present applied physics models that capture the hysteresis by dividing drying and rewetting into two related regimes based on relative humidity (RH). We show that a continuum model, incorporating a pore-blocking mechanism for desorption and equilibrium thermodynamics for adsorption, explains well the sorption hysteresis for a paste that remains above approximately 20% RH. In addition, we show with molecular models and experim...
The durability of reinforced concrete structures and their service life are closely related to the s...
The link between anomalous water sorption and dynamic porosity in cement pastes is explored using sp...
The shrinkage mechanisms of portland cement paste were in-vestigated from shrinkage, weight loss, an...
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...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
Shrinkage can be critical for the strength and durability of drying cement pastes. Shrinkage becomes...
A new ability to quantitatively evaluate the complex pore system of cement pastes, using water sorpt...
Cement paste has a complex mesoscale structure, and small changes in its pore network potentially ca...
AbstractCement-based materials often display an extraordinarily pronounced hysteresis of water sorpt...
International audienceThe aim of this work is to describe a method based on a simple representation ...
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...
Motivated by the puzzle of sorption hysteresis in Portland cement concrete or cement paste, we devel...
© 2019 National Academy of Sciences. All rights reserved. Capillary effects, such as imbibition dryi...
The durability of reinforced concrete structures and their service life are closely related to the s...
The link between anomalous water sorption and dynamic porosity in cement pastes is explored using sp...
The shrinkage mechanisms of portland cement paste were in-vestigated from shrinkage, weight loss, an...
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...
Cement paste has a complex distribution of pores and molecular-scale spaces. This distribution contr...
Shrinkage can be critical for the strength and durability of drying cement pastes. Shrinkage becomes...
A new ability to quantitatively evaluate the complex pore system of cement pastes, using water sorpt...
Cement paste has a complex mesoscale structure, and small changes in its pore network potentially ca...
AbstractCement-based materials often display an extraordinarily pronounced hysteresis of water sorpt...
International audienceThe aim of this work is to describe a method based on a simple representation ...
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...
Motivated by the puzzle of sorption hysteresis in Portland cement concrete or cement paste, we devel...
© 2019 National Academy of Sciences. All rights reserved. Capillary effects, such as imbibition dryi...
The durability of reinforced concrete structures and their service life are closely related to the s...
The link between anomalous water sorption and dynamic porosity in cement pastes is explored using sp...
The shrinkage mechanisms of portland cement paste were in-vestigated from shrinkage, weight loss, an...