This paper is devoted to the introduction of physicochemical, filler size, and distribution effect in micromechanical predictions of the overall viscoelastic properties of asphalt mastic. In order to account for the three effects, the morphologically representative pattern (MRP) approach was employed. The MRP model was improved due to the arduous practical use of equivalent modulus formula solution. Then, a homogeneous morphologically representative model (H-MRP) with the explicit solution was established based on the homogenization theory. Asphalt mastic is regarded as a composite material consisting of filler particles coated structural asphalt and free asphalt considering the physicochemical effect. An additional interphase surrounding p...
A micromechanical finite element (FE) framework was developed to predict the viscoelastic properties...
Fatigue cracking of viscoelastic asphalt composite materials is one of the major distresses in aspha...
Asphalt mixture is more complicated than other composite materials in terms of the higher volume fra...
This paper is devoted to the introduction of physicochemical, filler size, and distribution effect i...
Asphalt mastic is treated as a two-phase composite with asphalt matrix and embedded-matrix coated mi...
ABSTRACT. Micromechanical models have been directly used to predict the effective complex modulus of...
The viscoelastic modulus of hot-mix asphalt (HMA) such as the complex modulus, E*, is an essential m...
In a Mechanistic-Empirical (ME) pavement design system, the dynamic modulus is used to characterise ...
International audienceThe main aim of this study is to develop prediction equations of asphalt masti...
ABSTRACT: This study focuses on the mechanical behaviour of asphalt mastic composed of filler partic...
This study evaluated the viscoelastic properties of a performance grade (PG) binder blended with dif...
The rheological property of asphalt is an important factor affecting the pavement performance of asp...
A micromechanical-based finite element (FE) model was used to predict the dynamic complex modulus ( ...
Fatigue cracking of viscoelastic asphalt composite materials is one of the major distresses in aspha...
The mechanical performance of asphalt mixture is highly dependent on the viscoelastic property of as...
A micromechanical finite element (FE) framework was developed to predict the viscoelastic properties...
Fatigue cracking of viscoelastic asphalt composite materials is one of the major distresses in aspha...
Asphalt mixture is more complicated than other composite materials in terms of the higher volume fra...
This paper is devoted to the introduction of physicochemical, filler size, and distribution effect i...
Asphalt mastic is treated as a two-phase composite with asphalt matrix and embedded-matrix coated mi...
ABSTRACT. Micromechanical models have been directly used to predict the effective complex modulus of...
The viscoelastic modulus of hot-mix asphalt (HMA) such as the complex modulus, E*, is an essential m...
In a Mechanistic-Empirical (ME) pavement design system, the dynamic modulus is used to characterise ...
International audienceThe main aim of this study is to develop prediction equations of asphalt masti...
ABSTRACT: This study focuses on the mechanical behaviour of asphalt mastic composed of filler partic...
This study evaluated the viscoelastic properties of a performance grade (PG) binder blended with dif...
The rheological property of asphalt is an important factor affecting the pavement performance of asp...
A micromechanical-based finite element (FE) model was used to predict the dynamic complex modulus ( ...
Fatigue cracking of viscoelastic asphalt composite materials is one of the major distresses in aspha...
The mechanical performance of asphalt mixture is highly dependent on the viscoelastic property of as...
A micromechanical finite element (FE) framework was developed to predict the viscoelastic properties...
Fatigue cracking of viscoelastic asphalt composite materials is one of the major distresses in aspha...
Asphalt mixture is more complicated than other composite materials in terms of the higher volume fra...