The effect of nano-size particles of amorphous silica (nanosilica) on the rheological behaviour and mechanical strength development of cementitious mixes is addressed. Mini-slump and rheometric tests were carried out on cement pastes made with three dose levels of nanosilica at different water/binder ratios. Cement paste workability resulted to be significantly lower than expected for the adopted water/binder ratios, as a consequence of instantaneous interactions between nanosilica sol and the liquid phase of cement pastes, which evidenced the formation of gels characterised by a significant water retention capacity. The resulting reduction of the mix workability was avoided by suitable addition procedures of superplasticizers. No appreciab...
In this research the effects of adding silica and alumina nanoparticles on flow ability and compress...
This paper examines the rheology, hydration kinetics and development of the compressive strength of ...
Over the last years, nanotechnology is getting more attractive and nanomaterials are being used more...
The effect of nano-size particles of amorphous silica (nanosilica) on the rheological behaviour and ...
This paper presents the effects of five different types of superplasticizers on workability and comp...
The study outlined the raw materials and mix proportions to prepare composite cement pastes with the...
The influence of nanosilica (nanoscale-size particles of amorphous silica) on the leaching behaviour...
The influence of nano- and microsilica addition on ordinary Portland cement (OPC) pastes has been st...
The phenomena involved in portland cement hydration and interactions with nanosilica are very comple...
AbstractThe properties of cement mortars with nano-SiO2 were experimentally studied. The amorphous o...
It is known that nano-and microparticles have been very popular in recent years since their advantag...
Recently, the research of innovative building materials is focused on applying supplementary materia...
AbstractActive pozzolacic admixtures, such as silica fume (SF) and metakaolin, are used in modern co...
The pozzolanic effect of nanosilica (NS) particles when combined with Multi Walled Carbon Nanotubes ...
The paper describes modifications of cement paste mixtures using nanosilica to affect their physical...
In this research the effects of adding silica and alumina nanoparticles on flow ability and compress...
This paper examines the rheology, hydration kinetics and development of the compressive strength of ...
Over the last years, nanotechnology is getting more attractive and nanomaterials are being used more...
The effect of nano-size particles of amorphous silica (nanosilica) on the rheological behaviour and ...
This paper presents the effects of five different types of superplasticizers on workability and comp...
The study outlined the raw materials and mix proportions to prepare composite cement pastes with the...
The influence of nanosilica (nanoscale-size particles of amorphous silica) on the leaching behaviour...
The influence of nano- and microsilica addition on ordinary Portland cement (OPC) pastes has been st...
The phenomena involved in portland cement hydration and interactions with nanosilica are very comple...
AbstractThe properties of cement mortars with nano-SiO2 were experimentally studied. The amorphous o...
It is known that nano-and microparticles have been very popular in recent years since their advantag...
Recently, the research of innovative building materials is focused on applying supplementary materia...
AbstractActive pozzolacic admixtures, such as silica fume (SF) and metakaolin, are used in modern co...
The pozzolanic effect of nanosilica (NS) particles when combined with Multi Walled Carbon Nanotubes ...
The paper describes modifications of cement paste mixtures using nanosilica to affect their physical...
In this research the effects of adding silica and alumina nanoparticles on flow ability and compress...
This paper examines the rheology, hydration kinetics and development of the compressive strength of ...
Over the last years, nanotechnology is getting more attractive and nanomaterials are being used more...