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Effect of the processing conditions on the viscoelastic properties of a high-RAP recycled asphalt mixture: micromechanical and experimental approaches

Article dans une revue avec comité de lecture
Auteur
CHERIF, Rabeb
EDDHAHAK, Anissa
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
GABET, Thomas
HAMMOUM, Ferhat
NEJI, Jamel

URI
http://hdl.handle.net/10985/18476
DOI
10.1080/10298436.2019.1640363
Date
2019
Journal
International Journal of Pavement Engineering

Résumé

With the depletion of the virgin aggregates, many efforts have been oriented towards the recycling of the reclaimed asphalt pavement (RAP). However, quality control of the recycled product is required during the manufacture process. This research deals with the use of high-content RAP recycled asphalt mixture composed of 70% RAP based on experimental and micromechanical approaches. For the experimental part, a "Good" and a "Bad" blended mixture were manufactured in laboratory. Then, rheological measurements of the complex modulus of the different binders and mixtures were carried out. The micromechanical work is based on the generalised self-consistent scheme (GSCS) which was used to predict the mechanical properties of the recycled mixture. This approach aims to homogenize the heterogeneous material by taking into account both the intergranular porosity and the possible interactions between phases. The confrontation of the micromechanical model with the experimental results showed good agreements between measured data and predicted values of the complex modulus of the recycled asphalt. Moreover, it was highlighted from the experimental results that the blending process of the recycled mixture has a great influence on the viscoelastic properties of the recycled mixture. This result was also validated by the GSCS-based approach.

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Documents liés

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  • Prediction of the viscoelastic properties of an asphalt mixture: Micromechanical and experimental approaches(Article) [Prédiction des propriétés viscoélastiques des enrobés bitumineux Approches micromécaniques et expérimentales] 
    Article dans une revue avec comité de lecture
    CHERIF, Rabeb; EDDHAHAK, Anissa; GABET, Thomas; HAMMOUM, Ferhat; NÉJI, Jamel (Lavoisier, 2017)
    The asphalt mixtures are composed of aggregates and asphalt used in the construction of the majority of roads. In order to ensure the sustainability of the infrastructures, the evaluation of the quality and the performances ...
  • Thermal analysis by DSC of Phase Change Materials, study of the damage effect 
    Article dans une revue avec comité de lecture
    DRISSI, Sara; EDDHAHAK, Anissa; CARE, Sabine; NEJI, Jamel (Elsevier, 2015)
    This paper deals with an experimental study of Phase Change Materials (PCMs) by DSC and focuses particularly on the influence of PCMs damage on their thermodynamic properties. First, different series of tests were performed ...
  • Experimental and Numerical Thermal Properties Investigation of Cement-Based Materials Modified with PCM for Building Construction Use 
    Article dans une revue avec comité de lecture
    ESSID, Nessrine; EDDHAHAK-OUNI, Anissa; NEJI, Jamel (American Society of Civil Engineers, 2020)
    Due to their latent heat storage capacity, phase-change materials (PCM) incorporated in wallboards are an effective solution to reduce energy consumption inside buildings. This is achieved by incorporating PCM in construction ...
  • Experimental and numerical analysis of the energy efficiency of PCM concrete wallboards under different thermal scenarios 
    Article dans une revue avec comité de lecture
    ESSID, Nessrine; EDDHAHAK, Anissa; NEJI, Jamel (Elsevier BV, 2022)
    This paper aims to investigate the energy efficiency of PCM-concrete wallboards using experimental and numerical approaches. First, a laboratory experimental work was performed to manufacture PCM-concrete mixtures with ...
  • Étude expérimentale et numérique pour la caractérisation thermique des bétons à changement de phase (BCP) 
    Article dans une revue avec comité de lecture
    ESSID, NESRINE; EDDHAHAK, Anissa; NEJI, Jamel (Lavoisier, 2017)
    In order to satisfy the technological challenges required by the new building concepts in the aim of improved performances in terms of durability, thermal comfort and respect for the environment, many research ideas have ...

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