This paper presents the mechanical properties of porous asphalt (PA) with nanosilica (NS) modified asphalt binder in terms of its Moisture Susceptibility. This test is essential to evaluate the performance of NS-PA towards the resistance of moisture induced damage. Moisture susceptibility can be defined as the loss durability, strength and stiffness of PA due to the existence of moisture, causing the adhesive loss of binder and aggregate. It is interesting to know that the existence of nanoparticle with different proportion can affect the moisture susceptibility behavior of NS-PA. Three different percentages of nanosilica were mixed with PEN 60-70 type of binder in this study. Then, all these blended modified binder were used to prepare PA ...
AbstractDuring last decade, researchers’ interest in nanotechnology applications, particularly in th...
The rapid increase in the traffic load, higher traffic volume, daily and seasonal variation in tempe...
© 2016 The Authors. Published by Elsevier B.V. During last decade, researchers\u27 interest in nanot...
Several parameters affect asphalt mix performance against loading and environmental conditions. Mino...
Porous asphalt (PA) is a flexible pavement layer with high interconnected air voids and constructed ...
Nanosilica (NS) has been used in this study as an asphalt binder modifier to improve the binder prop...
Asphalt layers subjected to distress due to weather and excessive application of repetitive loads wh...
The objective of this study is to evaluate the rheological properties and chemical bonding of nano-m...
Nowadays, the utilisation of nanoparticle towards asphalt modification is increasing gradually. Nano...
One of the most common damages in asphalt mixes is the destructive effect of moisture on the binder ...
Conventional asphalt binder usually has a few deficiencies such as poor deformation resistance espec...
Introduction: Asphalt binder plays an important role in contributing to the good performance of asph...
Moisture damage is one of the most common and main distresses in asphalt pavements. Using Nanomateri...
The effect of nanosilica (NS) on aging resistance as well as stiffness of asphalt binder was investi...
Repetitive traffic load is the most important factor influencing porous asphalt (PA) performance. Th...
AbstractDuring last decade, researchers’ interest in nanotechnology applications, particularly in th...
The rapid increase in the traffic load, higher traffic volume, daily and seasonal variation in tempe...
© 2016 The Authors. Published by Elsevier B.V. During last decade, researchers\u27 interest in nanot...
Several parameters affect asphalt mix performance against loading and environmental conditions. Mino...
Porous asphalt (PA) is a flexible pavement layer with high interconnected air voids and constructed ...
Nanosilica (NS) has been used in this study as an asphalt binder modifier to improve the binder prop...
Asphalt layers subjected to distress due to weather and excessive application of repetitive loads wh...
The objective of this study is to evaluate the rheological properties and chemical bonding of nano-m...
Nowadays, the utilisation of nanoparticle towards asphalt modification is increasing gradually. Nano...
One of the most common damages in asphalt mixes is the destructive effect of moisture on the binder ...
Conventional asphalt binder usually has a few deficiencies such as poor deformation resistance espec...
Introduction: Asphalt binder plays an important role in contributing to the good performance of asph...
Moisture damage is one of the most common and main distresses in asphalt pavements. Using Nanomateri...
The effect of nanosilica (NS) on aging resistance as well as stiffness of asphalt binder was investi...
Repetitive traffic load is the most important factor influencing porous asphalt (PA) performance. Th...
AbstractDuring last decade, researchers’ interest in nanotechnology applications, particularly in th...
The rapid increase in the traffic load, higher traffic volume, daily and seasonal variation in tempe...
© 2016 The Authors. Published by Elsevier B.V. During last decade, researchers\u27 interest in nanot...