This study aims to investigate the synergistic effect of quaternary blends applying supplementary cementitious materials on sustainable Ultra-high Performance Concrete (UHPC) pastes. The hydration kinetics, pore structures, fresh behaviour, strength, fibre-to-matrix bond, shrinkage and environmental sustainability of 14 UHPC pastes are determined and analysed. The results show that limestone powder contributes to better environmental sustainability and fresh behaviour, but enlarged shrinkage and diminished strength, and application of silica powder is an effective measure to overcome those disadvantages. Slag cement possessing a relatively lower Ca/Si ratio (2.45) is preferred to a lower amount but finer silica (3% nano silica) in the prese...
Ultra high performance concrete (UHPC) is an emerging construction material with its superior mechan...
This paper addresses the development of blended cements with reduced clinker amount by partial repla...
The present study proposes a sustainable solution to the non-eco-friendly technique of cement produc...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
In the present research, UHPC pastes are designed with quaternary binders, namely Portland cement, s...
In the present research, UHPC pastes are designed with quaternary binders, namely Portland cement, s...
In the present research, UHPC pastes are designed with quaternary binders, namely Portland cement, s...
At present, reducing carbon emissions is an urgent problem that needs to be solved in the cement ind...
This paper aims to optimize high-volume limestone powder in sustainable ultra-high performance concr...
This paper aims to optimize high-volume limestone powder in sustainable ultra-high performance concr...
This paper explores the development laws of the fluidity, compressive strength, and autogenous shrin...
Ultra high performance concrete (UHPC) is an emerging construction material with its superior mechan...
This paper addresses the development of blended cements with reduced clinker amount by partial repla...
The present study proposes a sustainable solution to the non-eco-friendly technique of cement produc...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
This study aims to investigate the synergistic effect of quaternary blends applying supplementary ce...
In the present research, UHPC pastes are designed with quaternary binders, namely Portland cement, s...
In the present research, UHPC pastes are designed with quaternary binders, namely Portland cement, s...
In the present research, UHPC pastes are designed with quaternary binders, namely Portland cement, s...
At present, reducing carbon emissions is an urgent problem that needs to be solved in the cement ind...
This paper aims to optimize high-volume limestone powder in sustainable ultra-high performance concr...
This paper aims to optimize high-volume limestone powder in sustainable ultra-high performance concr...
This paper explores the development laws of the fluidity, compressive strength, and autogenous shrin...
Ultra high performance concrete (UHPC) is an emerging construction material with its superior mechan...
This paper addresses the development of blended cements with reduced clinker amount by partial repla...
The present study proposes a sustainable solution to the non-eco-friendly technique of cement produc...