An attempt was made to drift nanoalumina particles into concrete pores through electrokinetic treatment. An external electric current (current density = 3 A/m2) was applied for 3 and 15 days in reinforced concrete blocks toward steel reinforcement and microstructural characterizations (i.e. morphology observation and porosity analysis) were performed on concrete fragments of different depth from exposure surface. The morphology observation evidenced transport of nanoalumina from the exposure surface even reaching the rebar-concrete interface (up to 25–30 mm, in 15 days treatment). The porosity analysis of treated samples revealed that reduction of porosity of rebar interface was more pronounced as compared to the exposure surface and the tr...
Corrosion inhibitors can be introduced through concrete pores under the action of an electrical fie...
Deterioration of reinforced concrete members and their repair methods have been reported in various ...
This study focused on the use of nanotechnology in concrete to improve the wearing resistance of con...
An attempt was made to drift nanoalumina particles into concrete pores through electrokinetic treatm...
Concrete contains numerous pores that allow degradation when chloride ions migrate through these pat...
Concrete is a porous material which is susceptible to the migration of highly deleterious species su...
The paper investigates the possibility to use electroosmosis to transport nanosilica (NS) particles ...
A method and apparatus for strengthening cementitious concrete by placing a nanoparticle carrier liq...
The paper describes the influence of electric current on the porosity of concrete samples after elec...
Electrically induced or coupled transport processes including electrophoresis, electroosmosis and el...
A method and apparatus for strengthening cementitious concrete by placing a nanoparticle carrier liq...
Porous concrete structures are susceptible to the intrusion of chemical species, such as sulfates, c...
The article presents the study of obtaining electrically conductive concrete using carbon nanopartic...
Electrophoresis has been widely used to build up complex composites by infiltrating particulate phas...
YesLimited information related to the application of nano silica in recycled aggregate concretes has...
Corrosion inhibitors can be introduced through concrete pores under the action of an electrical fie...
Deterioration of reinforced concrete members and their repair methods have been reported in various ...
This study focused on the use of nanotechnology in concrete to improve the wearing resistance of con...
An attempt was made to drift nanoalumina particles into concrete pores through electrokinetic treatm...
Concrete contains numerous pores that allow degradation when chloride ions migrate through these pat...
Concrete is a porous material which is susceptible to the migration of highly deleterious species su...
The paper investigates the possibility to use electroosmosis to transport nanosilica (NS) particles ...
A method and apparatus for strengthening cementitious concrete by placing a nanoparticle carrier liq...
The paper describes the influence of electric current on the porosity of concrete samples after elec...
Electrically induced or coupled transport processes including electrophoresis, electroosmosis and el...
A method and apparatus for strengthening cementitious concrete by placing a nanoparticle carrier liq...
Porous concrete structures are susceptible to the intrusion of chemical species, such as sulfates, c...
The article presents the study of obtaining electrically conductive concrete using carbon nanopartic...
Electrophoresis has been widely used to build up complex composites by infiltrating particulate phas...
YesLimited information related to the application of nano silica in recycled aggregate concretes has...
Corrosion inhibitors can be introduced through concrete pores under the action of an electrical fie...
Deterioration of reinforced concrete members and their repair methods have been reported in various ...
This study focused on the use of nanotechnology in concrete to improve the wearing resistance of con...