This paper evaluates the mechanical properties and performance of the fine aggregate matrix (FAM) existing within full reclaimed asphalt pavement (RAP) asphalt mixtures, in terms of their rheological and fatigue deterioration properties. The RAP material was produced in the laboratory to control its properties and to reduce the effects of variability associated with these materials. Four FAM mixtures were analysed, including a virgin hot mix asphalt, a 100%RAP, and two mixtures containing 50% RAP in combination with virgin materials using different penetration grade virgin binders. The analysis of the deterioration properties was based on the application of a fracture model that incorporates the viscoelastic properties of the material, the ...
The aged properties of Reclaimed Asphalt (RA) binders are one of the main factorsworkin...
The aged properties of Reclaimed Asphalt (RA) binders are one of the main factorsworkin...
This paper illustrates the results obtained in a study which focused on the mix design and performan...
This paper evaluates the mechanical properties and performance of the fine aggregate matrix (FAM) ex...
This paper evaluates the mechanical properties and performance of the fine aggregate matrix (FAM) ex...
This paper evaluates the mechanical properties and performance of the fine aggregate matrix (FAM) ex...
Performance characteristics of bituminous mixtures play the most influential role in designing flexi...
Because of the sustainability transition in the asphalt industry, it is increasingly popular to appl...
The use of recycled materials in asphalt mixtures such as reclaimed asphalt pavements (RAP) and more...
AbstractThe RAP (Reclaimed Asphalt Pavement) utilization in bituminous mixtures highlights the need ...
High percentage reclaimed asphalt pavement (RAP) is prevailing in pavement engineering for its advan...
© 2019, © 2019 Informa UK Limited, trading as Taylor & Francis Group. This paper uses the Saturati...
The use of reclaimed asphalt pavement (RAP) in flexible pavement surface layer has been a major sens...
The RAP (Reclaimed Asphalt Pavement) utilization in bituminous mixtures highlights the need to evalu...
© 2019 by the authors. The aged properties of Reclaimed Asphalt (RA) binders are one of the main fac...
The aged properties of Reclaimed Asphalt (RA) binders are one of the main factorsworkin...
The aged properties of Reclaimed Asphalt (RA) binders are one of the main factorsworkin...
This paper illustrates the results obtained in a study which focused on the mix design and performan...
This paper evaluates the mechanical properties and performance of the fine aggregate matrix (FAM) ex...
This paper evaluates the mechanical properties and performance of the fine aggregate matrix (FAM) ex...
This paper evaluates the mechanical properties and performance of the fine aggregate matrix (FAM) ex...
Performance characteristics of bituminous mixtures play the most influential role in designing flexi...
Because of the sustainability transition in the asphalt industry, it is increasingly popular to appl...
The use of recycled materials in asphalt mixtures such as reclaimed asphalt pavements (RAP) and more...
AbstractThe RAP (Reclaimed Asphalt Pavement) utilization in bituminous mixtures highlights the need ...
High percentage reclaimed asphalt pavement (RAP) is prevailing in pavement engineering for its advan...
© 2019, © 2019 Informa UK Limited, trading as Taylor & Francis Group. This paper uses the Saturati...
The use of reclaimed asphalt pavement (RAP) in flexible pavement surface layer has been a major sens...
The RAP (Reclaimed Asphalt Pavement) utilization in bituminous mixtures highlights the need to evalu...
© 2019 by the authors. The aged properties of Reclaimed Asphalt (RA) binders are one of the main fac...
The aged properties of Reclaimed Asphalt (RA) binders are one of the main factorsworkin...
The aged properties of Reclaimed Asphalt (RA) binders are one of the main factorsworkin...
This paper illustrates the results obtained in a study which focused on the mix design and performan...