In this work, strength assessments and coefficient of water absorption of high performance self-compacting concrete containing different amounts of TiO2 nanoparticles have been investigated. The results indicate that the strength and the resistance to water permeability of the specimens are improved by adding TiO2 nanoparticles in the cement paste up to 4.0 wt%. TiO2 nanoparticles, as a result of increased crystalline Ca(OH)(2) amount especially at the early age of hydration, could accelerate C-S-H gel formation and hence increase the strength of the concrete specimens. In addition, TiO2 nanoparticles are able to act as nanofillers and recover the pore structure of the specimens by decreasing harmful pores. Several empirical relationships h...
This paper investigates the effect of curing temperature on the hydration, microstructure, compressi...
In this paper, the compressive and flexural strength together with microstructural analysis of morta...
In the present study, flexural strength of self-compacting concrete with different amount of ZnO2 na...
In this work, strength assessments and percentage of water absorption of self compacting concrete co...
The effect of limewater on flexural strength and water permeability of TiO2 nanoparticles binary ble...
In this work, compressive, flexural and split tensile strengths together with coefficient of water a...
The results of studies to determine the effect of titanium dioxide nanoparticles (nanoTiO2), finely ...
The results of studies to determine the effect of titanium dioxide nanoparticles (nanoTiO2), finely ...
In the present study, flexural strength, pore structure, thermal behavior and microstructure charact...
In the present study, flexural strength, thermal properties and microstructure of self compacting co...
The effects of nano-TiO2 (NT) on microstructures and mechanical properties of cement mortars were st...
In this study, the effect of limewater on strength assessments and percentage of water absorption of...
The present study investigates the compressive strength, water absorption, electrical resistivity, a...
Abstract: The purpose of this study is to investigate the compressive strength and workability of co...
Low temperature negatively affects the engineering performance of cementitious materials and hinders...
This paper investigates the effect of curing temperature on the hydration, microstructure, compressi...
In this paper, the compressive and flexural strength together with microstructural analysis of morta...
In the present study, flexural strength of self-compacting concrete with different amount of ZnO2 na...
In this work, strength assessments and percentage of water absorption of self compacting concrete co...
The effect of limewater on flexural strength and water permeability of TiO2 nanoparticles binary ble...
In this work, compressive, flexural and split tensile strengths together with coefficient of water a...
The results of studies to determine the effect of titanium dioxide nanoparticles (nanoTiO2), finely ...
The results of studies to determine the effect of titanium dioxide nanoparticles (nanoTiO2), finely ...
In the present study, flexural strength, pore structure, thermal behavior and microstructure charact...
In the present study, flexural strength, thermal properties and microstructure of self compacting co...
The effects of nano-TiO2 (NT) on microstructures and mechanical properties of cement mortars were st...
In this study, the effect of limewater on strength assessments and percentage of water absorption of...
The present study investigates the compressive strength, water absorption, electrical resistivity, a...
Abstract: The purpose of this study is to investigate the compressive strength and workability of co...
Low temperature negatively affects the engineering performance of cementitious materials and hinders...
This paper investigates the effect of curing temperature on the hydration, microstructure, compressi...
In this paper, the compressive and flexural strength together with microstructural analysis of morta...
In the present study, flexural strength of self-compacting concrete with different amount of ZnO2 na...