Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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Materials Map under construction

The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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University of Palermo

in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (7/7 displayed)

  • 2024Investigating the Ability of Road Specifications to Discriminate the Rutting Behavior of Rubberized Asphalt Mixtures in Italy2citations
  • 2023Bituminous Binder and Bituminous Mixture Modified with Waste Polyethylene4citations
  • 2023Bituminous binder and bituminous mixture modified with waste polyethylene3citations
  • 2022Rheological properties of asphalt binder modified with waste polyethylene: an interlaboratory research from the RILEM TC WMR62citations
  • 2020Thermo-rheological analysis of WMA-additive modified binders20citations
  • 2019Intrinsic adhesive and cohesive assessment of the moisture sensitivity of bio-rejuvenated recycled asphalt binderscitations
  • 2019Data Compression Approach for Long-Term Monitoring of Pavement Structures4citations

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Ghani, Usman
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Milazzo, Silvia
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Giancontieri, Gaspare
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Gu, Fan
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Buttitta, Gabriella
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Thom, Nick
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Airey, Gordon
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Jiménez Del Barco Carrión, Ana
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Manosalvas-Paredes, Mario
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Chatti, Karim
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Blanc, Juliette
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Co-Authors (by relevance)

  • Ghani, Usman
  • Milazzo, Silvia
  • Giancontieri, Gaspare
  • Gu, Fan
  • Buttitta, Gabriella
  • Pasquini, Emiliano
  • Pasetto, Marco
  • Vasconcelos, Kamilla
  • Porot, Laurent
  • Riccardi, Chiara
  • Cannone Falchetto, Augusto
  • Tušar, Marjan
  • Poulikakos, Lily
  • Wang, Di
  • Kakar, Muhammad Rafiq
  • Baliello, Andrea
  • Thom, Nick
  • Abed, Ahmed
  • Airey, Gordon
  • Jiménez Del Barco Carrión, Ana
  • Manosalvas-Paredes, Mario
  • Lajnef, Nizar
  • Chatti, Karim
  • Blanc, Juliette
  • Aono, Kenji
OrganizationsLocationPeople

document

Intrinsic adhesive and cohesive assessment of the moisture sensitivity of bio-rejuvenated recycled asphalt binders

  • Jiménez Del Barco Carrión, Ana
  • Airey, Gordon
  • Lo Presti, Davide
Abstract

Alternative binders not derived from fossil fuels, known as biobinders, are opening new paths for multiple applications in road infrastructure.Biobinders, usually produced from bio-oils obtained from the processing of biomass and industry by-products, are tuneable materials whose properties can be adjusted to meet specific targets.For this reason, an interesting approach is to couple biobinders with Reclaimed Asphalt (RA) by taking advantage of their rejuvenating properties to design bio-asphalt mixtures with high-content RA and no additional virgin bitumen.Recent research has proven the feasibility of this approach through validation at full-scale (BioRePavation project).However certain aspects related to the durability of bio-asphalt mixtures still require further research, one of these being their resistance to moisture damage.This study aims at filling some of these current gaps by conducting an initial investigation of the moisture sensitivity of selected biobinders and bio-rejuvenated asphalt binders.In order to do this, the intrinsic adhesion and cohesion properties of an extracted RA binder, two biobinders, their blends and two types of aggregates were characterised by means of Surface Free Energy (SFE), individually and as a system.The binders/blendsaggregate systems were further tested by means of the Pneumatic Adhesion Tensile Test Instrument (PATTI) to determine their pull-off tensile strength (POTS).The results show that the bio-rejuvenated asphalt binders present equivalent cohesive and adhesive properties to a conventional bitumen and superior performance when compared to the RA binder.Hence, the combination of biobinders and RA has great potential to guarantee resistance to moisture damage of bio-recycled asphalt mixtures with high-content RA and no additional bitumen.

Topics
  • impedance spectroscopy
  • surface
  • strength
  • tensile strength
  • durability
  • supercritical fluid extraction