This paper presents the fresh and hardened properties of self-compacting mortar (SCM) incorporating nano-CuO (NC) and fly ash (FA). CuO nanoparticles at the rates of 1%, 2%, 3% and 4%, and low-calcium fly ash at the rates of 20%, 25%, and 30% of the binder by weight were considered. Mini slump flow diameter and mini V-funnel flow time tests were conducted to determine the rheological properties of SCMs incorporating fly ash and nano-CuO. Compressive strength was determined at the ages of 7 days as an early age, 28 days as the standard age and 90 days as a late age. Water absorption, electrical resistivity and rapid chloride permeability tests (RCPT) were also performed to determine the durability properties. The results showed significant i...
This paper presents the effect of nano silica (NS) on the compressive strength of mortars and concre...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
Self-compacting concrete (SCC) is increasingly takes place in construction applications due to its e...
This paper presents the fresh and hardened properties of self-compacting mortar (SCM) incorporating ...
The present study investigates the compressive strength, water absorption, electrical resistivity, a...
This paper investigates the influence of the addition of nanoparticles, namely SnO2, ZrO2 and CaCO3,...
In this work, strength assessments and percentage of water absorption of high performance self compa...
In this paper, the effects of using Cr2O3 and ZnO2 nanoparticles on the mechanical properties and du...
AbstractThis research is aimed to investigating the possibility of substituting cement with fly ash....
In this study, compressive and flexural strength, thermal properties, and pore structure of mortars ...
This paper evaluates the effect of Ultrafine Fly Ash (UFFA) and Nano Silica (NS) on compressive stre...
Resumo: Cement, as well as the remaining constituents of self-compacting mortars, must be carefully ...
The effects of nano silica (NS), three different fly ash contents, two curing types and exposure to ...
In this study the effect of pore structure on the mechanical properties and durability characteristi...
In this study, the effects of nano-CuO (NC) on engineering properties of fibre-reinforced mortars in...
This paper presents the effect of nano silica (NS) on the compressive strength of mortars and concre...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
Self-compacting concrete (SCC) is increasingly takes place in construction applications due to its e...
This paper presents the fresh and hardened properties of self-compacting mortar (SCM) incorporating ...
The present study investigates the compressive strength, water absorption, electrical resistivity, a...
This paper investigates the influence of the addition of nanoparticles, namely SnO2, ZrO2 and CaCO3,...
In this work, strength assessments and percentage of water absorption of high performance self compa...
In this paper, the effects of using Cr2O3 and ZnO2 nanoparticles on the mechanical properties and du...
AbstractThis research is aimed to investigating the possibility of substituting cement with fly ash....
In this study, compressive and flexural strength, thermal properties, and pore structure of mortars ...
This paper evaluates the effect of Ultrafine Fly Ash (UFFA) and Nano Silica (NS) on compressive stre...
Resumo: Cement, as well as the remaining constituents of self-compacting mortars, must be carefully ...
The effects of nano silica (NS), three different fly ash contents, two curing types and exposure to ...
In this study the effect of pore structure on the mechanical properties and durability characteristi...
In this study, the effects of nano-CuO (NC) on engineering properties of fibre-reinforced mortars in...
This paper presents the effect of nano silica (NS) on the compressive strength of mortars and concre...
This study explores the effects of different types of nanoparticles, namely nano-SiO2 (NS), nano-TiO...
Self-compacting concrete (SCC) is increasingly takes place in construction applications due to its e...