The effect of limestone on the hydration and microstructural development of ultra high performance concrete (UHPC) with different levels of replacement (34%, 54% and 74% by volume) was investigated. Up to 54% replacement of cement by limestone the mixes showed better workability and higher compressive strength (170 MPa at 56 days for 54% addition) compared to a classical mix (155 MPa) with no limestone replacement. The kinetics of hydration were compared for different replacement levels using isothermal calorimetry. The phase development was quantified by X-ray diffraction with Rietveld method combined with thermal gravimetric analysis. The pore structure was examined by mercury intrusion porosimetry. The composition of hydration products w...
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...
Recent research has recognized limestone calcined clay cement (LC3) a promising sustainable cementit...
Ultra-high-performance concrete (UHPC) is a material developed to maximize the engineering character...
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...
The production of ultra-high performance concrete is one of the new ideas in modern construction, de...
Ultra-high performance concrete (UHPC) is characterized by a very low water-to-cement ratio, which c...
Ultra-high performance concrete (UHPC) is an innovative cement-based composite with high mechanical ...
Ultra-high performance concrete (UHPC) is an innovative cement-based composite with high mechanical ...
For optimum production of ultra-high performance concrete (UHPC), the material and microstructural p...
In this paper, two kinds of pumice particles with different diameters and water absorption rates are...
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 reports the influence of limestone particle size and the type of (partial) cement replace...
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...
Recent research has recognized limestone calcined clay cement (LC3) a promising sustainable cementit...
Ultra-high-performance concrete (UHPC) is a material developed to maximize the engineering character...
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...
The production of ultra-high performance concrete is one of the new ideas in modern construction, de...
Ultra-high performance concrete (UHPC) is characterized by a very low water-to-cement ratio, which c...
Ultra-high performance concrete (UHPC) is an innovative cement-based composite with high mechanical ...
Ultra-high performance concrete (UHPC) is an innovative cement-based composite with high mechanical ...
For optimum production of ultra-high performance concrete (UHPC), the material and microstructural p...
In this paper, two kinds of pumice particles with different diameters and water absorption rates are...
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 reports the influence of limestone particle size and the type of (partial) cement replace...
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...
Recent research has recognized limestone calcined clay cement (LC3) a promising sustainable cementit...