With the increase in the demand for bitumen, it has become essential for pavement engineers to ensure that construction of sustainable pavements occurs. For a complete analysis of the pavement, both its structural and functional performances are considered. In this study, a novel material (i.e., Graphene Nano-Platelets (GNPs)) has been used to enhance both of the types of pavements’ performances. Two percentages of GNPs (i.e., 2% and 4% by the weight of the binder) were used for the modification of asphalt binder in order to achieve the desired Performance Grade. GNPs were homogeneously dispersed in the asphalt binder, which was validated by Scanning Electron Microscope (SEM) images and a Hot Storage Stability Test. To analyze the str...
Aiming to improve the comprehensive road performance of asphalt binders, especially the high-tempera...
In this study, the novel nanomaterial graphene oxide (GO) was added as a modifier to polyurethane–st...
This presented research investigated the physical properties and accelerated sunlight-healing perfor...
With the increase in the demand for bitumen, it has become essential for pavement engineers to ensur...
Recently, nanomaterials have attracted attention in the field of pavement construction as modifiers ...
In recent years, nanotechnology has sparked an interest in nanomodification of bituminous materials ...
Improving bonding and mechanical strengths is important for the application of bond coats used in th...
According to recent research, the addition of graphene nano-platelets (GNPs) to bitumen can lead to ...
Compared with traditional materials, nanomaterial has rich and excellent performance due to the size...
With the major advance in nanotechnology, there has been an emerging interest in applying nanoscale ...
As the State of California continues to grow, demand for enhanced infrastructure such as roadways an...
The purpose of this study is to use multiple-layer graphite nanoplatelets to modify the asphalt due ...
In this study, graphene-modified asphalt (GMA) was prepared from SK-70# matrix asphalt and ethylene ...
Temperature-induced rutting is a common problem for asphalt pavements, with the rheological properti...
In the advanced research fields of solar cell and energy storing materials, graphene and graphene ox...
Aiming to improve the comprehensive road performance of asphalt binders, especially the high-tempera...
In this study, the novel nanomaterial graphene oxide (GO) was added as a modifier to polyurethane–st...
This presented research investigated the physical properties and accelerated sunlight-healing perfor...
With the increase in the demand for bitumen, it has become essential for pavement engineers to ensur...
Recently, nanomaterials have attracted attention in the field of pavement construction as modifiers ...
In recent years, nanotechnology has sparked an interest in nanomodification of bituminous materials ...
Improving bonding and mechanical strengths is important for the application of bond coats used in th...
According to recent research, the addition of graphene nano-platelets (GNPs) to bitumen can lead to ...
Compared with traditional materials, nanomaterial has rich and excellent performance due to the size...
With the major advance in nanotechnology, there has been an emerging interest in applying nanoscale ...
As the State of California continues to grow, demand for enhanced infrastructure such as roadways an...
The purpose of this study is to use multiple-layer graphite nanoplatelets to modify the asphalt due ...
In this study, graphene-modified asphalt (GMA) was prepared from SK-70# matrix asphalt and ethylene ...
Temperature-induced rutting is a common problem for asphalt pavements, with the rheological properti...
In the advanced research fields of solar cell and energy storing materials, graphene and graphene ox...
Aiming to improve the comprehensive road performance of asphalt binders, especially the high-tempera...
In this study, the novel nanomaterial graphene oxide (GO) was added as a modifier to polyurethane–st...
This presented research investigated the physical properties and accelerated sunlight-healing perfor...