In cement-based materials, alkalis mainly exist in the form of different alkali sulfates. In this study, the impacts of different alkali sulfates on the shrinkage, hydration, pore structure, fractal dimension and microstructure of low-heat Portland cement (LHPC), medium-heat Portland cement (MHPC) and ordinary Portland cement (OPC) are investigated. The results indicate that alkali sulfates magnify the autogenous shrinkage and drying shrinkage of cement-based materials with different mineral compositions, which are mainly related to different pore structures and hydration processes. LHPC has the lowest shrinkage. Otherwise, the effect of alkali sulfates on the autogenous shrinkage is more profound than that of drying shrinkage. Compared wit...
Sodium gluconate has been shown to compensate the impact of alkalis on the long term strength develo...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
International audienceThe physico-chemical properties of cementitious materials, such as transport p...
This research investigates the influence of alkali hydroxides on unrestrained volume changes. A deta...
This research investigates the influence of alkali hydroxides on unrestrained volume changes. A deta...
The effect of the sulfates and alkalis on the durability of Portland cement systems was investigated...
To investigate the effects of slag and Na2O content on the macroscopic properties and pore structure...
© Copyright 2017 Japan Concrete Institute. Previous studies demonstrated that alkalis can considerab...
© 2017, RILEM. In this work, shrinkage performance of ordinary portland cement (OPC) paste containin...
© Copyright 2016 Japan Concrete Institute. This paper presents a quantitative analysis of hydrated p...
The essence of the problem related to proper deformations in alkali-activated cements (AAC) complica...
Drying shrinkage of alkali-activated slag concrete (AASC) is significantly greater than that of conc...
This study reports the effects of different drying procedures on the pore determination and phase ev...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
The essence of the problem related to proper deformations in alkali-activated cements (AAC) complica...
Sodium gluconate has been shown to compensate the impact of alkalis on the long term strength develo...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
International audienceThe physico-chemical properties of cementitious materials, such as transport p...
This research investigates the influence of alkali hydroxides on unrestrained volume changes. A deta...
This research investigates the influence of alkali hydroxides on unrestrained volume changes. A deta...
The effect of the sulfates and alkalis on the durability of Portland cement systems was investigated...
To investigate the effects of slag and Na2O content on the macroscopic properties and pore structure...
© Copyright 2017 Japan Concrete Institute. Previous studies demonstrated that alkalis can considerab...
© 2017, RILEM. In this work, shrinkage performance of ordinary portland cement (OPC) paste containin...
© Copyright 2016 Japan Concrete Institute. This paper presents a quantitative analysis of hydrated p...
The essence of the problem related to proper deformations in alkali-activated cements (AAC) complica...
Drying shrinkage of alkali-activated slag concrete (AASC) is significantly greater than that of conc...
This study reports the effects of different drying procedures on the pore determination and phase ev...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
The essence of the problem related to proper deformations in alkali-activated cements (AAC) complica...
Sodium gluconate has been shown to compensate the impact of alkalis on the long term strength develo...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
International audienceThe physico-chemical properties of cementitious materials, such as transport p...