The research work described in the paper focused on fatigue and healing properties of bituminous mastics reinforced with nano-sized additives. Commercially available multiwall carbon nanotubes (CNTs) and montmorillonite nanoclay (NC) were combined with a single base bitumen and a standard mineral filler to produce bituminous mastics. These blends were prepared in the laboratory by making use of a technique consisting in simple shear mixing followed by sonication. Fatigue behaviour of mastics under repeated loading was investigated by means of time sweeps performed in the strain-controlled mode at various amplitudes. Healing potential was assessed by adopting a testing protocol specifically conceived to discriminate between recovery of damag...
The experimental investigation presented in this paper focused on storage stability of bituminous bi...
First, porous asphalt (PA) pavement possesses a lower strength and lifetime compared to typical dens...
Rutting is one of the most important issues associated with asphalt pavements. This defect leads to ...
The research work described in the paper focused on fatigue and healing properties of bituminous ma...
The research work focused on fatigue and healing properties of bituminous binders containing carbon ...
The study presented in this paper investigated the fatigue properties of bituminous binders reinforc...
Fatigue resistance of bituminous materials is related to time-dependent phenomena, such as damage ac...
The prediction of asphalt pavement performance is closely linked to the behaviour of mastic, consist...
The study presented in this paper aimed at evaluating the impact of different nanosized additives, i...
Bituminous mastic is a self-healing viscoelastic material. Recoverable phenomena, such as thixotropy...
Montmorillonite (Mt) nanoclay is a layered silicate mineral with a 2:1-type layer structure, two tet...
Fatigue is one of the major distresses of flexible pavements and is mainly related to the rheologica...
The experimental investigation described in this paper focused on the effects of nanoclays on the fa...
The analysis of fatigue behavior of bituminous binders is a complex issue due to several time-temper...
The experimental investigation presented in this paper focused on storage stability of bituminous bi...
First, porous asphalt (PA) pavement possesses a lower strength and lifetime compared to typical dens...
Rutting is one of the most important issues associated with asphalt pavements. This defect leads to ...
The research work described in the paper focused on fatigue and healing properties of bituminous ma...
The research work focused on fatigue and healing properties of bituminous binders containing carbon ...
The study presented in this paper investigated the fatigue properties of bituminous binders reinforc...
Fatigue resistance of bituminous materials is related to time-dependent phenomena, such as damage ac...
The prediction of asphalt pavement performance is closely linked to the behaviour of mastic, consist...
The study presented in this paper aimed at evaluating the impact of different nanosized additives, i...
Bituminous mastic is a self-healing viscoelastic material. Recoverable phenomena, such as thixotropy...
Montmorillonite (Mt) nanoclay is a layered silicate mineral with a 2:1-type layer structure, two tet...
Fatigue is one of the major distresses of flexible pavements and is mainly related to the rheologica...
The experimental investigation described in this paper focused on the effects of nanoclays on the fa...
The analysis of fatigue behavior of bituminous binders is a complex issue due to several time-temper...
The experimental investigation presented in this paper focused on storage stability of bituminous bi...
First, porous asphalt (PA) pavement possesses a lower strength and lifetime compared to typical dens...
Rutting is one of the most important issues associated with asphalt pavements. This defect leads to ...