This study aims to provide a better understanding of the autogenous shrinkage of slag and fly ash-based alkali-activated materials (AAMs) cured at ambient temperature. The main reaction products in AAMs pastes are C-A-SH type gel and the reaction rate decreases when slag is partially replaced by fly ash. Due to the chemical shrinkage and the fine pore structure of AAMs pastes, drastic drop of internal relative humidity is observed and large pore pressure is generated. The pore pressure induces not only elastic deformation but also a large creep of the paste. Besides the pore pressure, other driving forces, like the reduction of steric-hydration force due to the consumption of ions, also cause a certain amount of shrinkage, especially in the...
The aim of this study was to determine the effects of partial fly ash substitution in to a series of...
Replacing ordinary Portland cement-based materials with alkali-activated industrial wastes is often ...
The purpose of this study is to investigate the autogenous shrinkage of alkali-activated slag/fly as...
This study aims to provide a better understanding of the autogenous shrinkage of slag and fly ash-ba...
This paper aims to provide a better understanding of autogenous shrinkage of alkali-activated fly as...
The autogenous shrinkage of alkali-activated fly ash/slag (AAFS) pastes during first 24 h after cast...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
This study aims to predict the autogenous shrinkage of alkali-activated concrete (AAC) based on slag...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
This study investigates the influences of internal curing on reducing the autogenous shrinkage of al...
This paper presents an experimental study on mitigation of autogenous shrinkage in alkaliactivated ...
In this study, internal curing by superabsorbent polymers (SAP) is utilized to mitigate self-desicca...
The aim of this study was to determine the effects of partial fly ash substitution in to a series of...
This paper addresses the fresh behaviors, gel structure, strength, porosity and drying shrinkage of ...
Alkali-activated slag and fly ash (AASF) materials are emerging as promising alternatives to convent...
The aim of this study was to determine the effects of partial fly ash substitution in to a series of...
Replacing ordinary Portland cement-based materials with alkali-activated industrial wastes is often ...
The purpose of this study is to investigate the autogenous shrinkage of alkali-activated slag/fly as...
This study aims to provide a better understanding of the autogenous shrinkage of slag and fly ash-ba...
This paper aims to provide a better understanding of autogenous shrinkage of alkali-activated fly as...
The autogenous shrinkage of alkali-activated fly ash/slag (AAFS) pastes during first 24 h after cast...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
This study aims to predict the autogenous shrinkage of alkali-activated concrete (AAC) based on slag...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
This study investigates the influences of internal curing on reducing the autogenous shrinkage of al...
This paper presents an experimental study on mitigation of autogenous shrinkage in alkaliactivated ...
In this study, internal curing by superabsorbent polymers (SAP) is utilized to mitigate self-desicca...
The aim of this study was to determine the effects of partial fly ash substitution in to a series of...
This paper addresses the fresh behaviors, gel structure, strength, porosity and drying shrinkage of ...
Alkali-activated slag and fly ash (AASF) materials are emerging as promising alternatives to convent...
The aim of this study was to determine the effects of partial fly ash substitution in to a series of...
Replacing ordinary Portland cement-based materials with alkali-activated industrial wastes is often ...
The purpose of this study is to investigate the autogenous shrinkage of alkali-activated slag/fly as...