The rheological properties of fresh cement paste with different content of graphene nanoplatelets (GNPs), different shear rate cycles and resting time was investigated. The rheological data were fitted by the Bingham model, Modified Bingham model, Herschel-Bulkley model and Casson model to estimate the yield stress and plastic viscosity, and to see trend of the flow curves. The effectiveness of these rheological models was expressed by the standard error. Test results showed that yield stress and plastic viscosity increased with the increase in the content of graphene in the cement based composite and resting time while the values of these parameters decreased for higher shear rate cycle. In comparison to control sample, the GNP cement base...
As a major component of concrete, Portland cement has become the most consumed manmade substance. Th...
Graphene oxide (GO) offers great potential as nanoscale reinforcement for cementitious material. In ...
Extensive research on functionalized graphene, graphene oxide, and carbon nanotube based cement comp...
The rheological properties of fresh cement paste with different content of graphene nanoplatelets (G...
The rheological properties of fresh cement paste with different content of graphene nanoplatelets (G...
Abstract The concrete production processes including materials mixing, pumping, transportation, inje...
The concrete production processes including materials mixing, pumping, transportation, injection, po...
iezo-resistive characteristics of cement-based materials were investigated using gra-phene nanoplate...
In this research, Graphene oxide (GO), prepared by modified hammer method, is characterized using X...
In this research, Graphene oxide (GO), prepared by modified hammer method, is characterized using X-...
In this research, Graphene oxide (GO), prepared by modified hammer method, is characterized using X-...
In this research, Graphene oxide (GO), prepared by modified hammer method, is characterized using X-...
This study examines and compares the workability, hydration, mechanical, microstructure and transpor...
This study examines and compares the workability, hydration, mechanical, microstructure and transpor...
This study examines and compares the workability, hydration, mechanical, microstructure and transpor...
As a major component of concrete, Portland cement has become the most consumed manmade substance. Th...
Graphene oxide (GO) offers great potential as nanoscale reinforcement for cementitious material. In ...
Extensive research on functionalized graphene, graphene oxide, and carbon nanotube based cement comp...
The rheological properties of fresh cement paste with different content of graphene nanoplatelets (G...
The rheological properties of fresh cement paste with different content of graphene nanoplatelets (G...
Abstract The concrete production processes including materials mixing, pumping, transportation, inje...
The concrete production processes including materials mixing, pumping, transportation, injection, po...
iezo-resistive characteristics of cement-based materials were investigated using gra-phene nanoplate...
In this research, Graphene oxide (GO), prepared by modified hammer method, is characterized using X...
In this research, Graphene oxide (GO), prepared by modified hammer method, is characterized using X-...
In this research, Graphene oxide (GO), prepared by modified hammer method, is characterized using X-...
In this research, Graphene oxide (GO), prepared by modified hammer method, is characterized using X-...
This study examines and compares the workability, hydration, mechanical, microstructure and transpor...
This study examines and compares the workability, hydration, mechanical, microstructure and transpor...
This study examines and compares the workability, hydration, mechanical, microstructure and transpor...
As a major component of concrete, Portland cement has become the most consumed manmade substance. Th...
Graphene oxide (GO) offers great potential as nanoscale reinforcement for cementitious material. In ...
Extensive research on functionalized graphene, graphene oxide, and carbon nanotube based cement comp...