Characterisation of aged rejuvenated bitumen using master curve approach

  • Recycling asphalt pavement (RAP) is a sustainable approach to pavement construction, reducing waste and conserving natural resources. However, RAP contains aged binders that require restoration to regain optimal rheological properties. Rejuvenators play a key role in modifying these binders, helping them meet specific performance requirements. Current practices involve using bitumen of particular grades, with or without rejuvenators, depending on the proportion of RAP being recycled. Determining the appropriate rejuvenator dosage is essential for maximizing RAP utilization while maintaining the desired binder characteristics. This study investigates the rheological performance of unmodified and polymer-modified binders under different aging conditions and rejuvenator concentrations (0–12%) using a dynamic shear rheometer. The results show that aging significantly alters mechanical properties of bitumen, while rejuvenators enhance viscosity and restore rheological behavior. These findings underscore the importance of properRecycling asphalt pavement (RAP) is a sustainable approach to pavement construction, reducing waste and conserving natural resources. However, RAP contains aged binders that require restoration to regain optimal rheological properties. Rejuvenators play a key role in modifying these binders, helping them meet specific performance requirements. Current practices involve using bitumen of particular grades, with or without rejuvenators, depending on the proportion of RAP being recycled. Determining the appropriate rejuvenator dosage is essential for maximizing RAP utilization while maintaining the desired binder characteristics. This study investigates the rheological performance of unmodified and polymer-modified binders under different aging conditions and rejuvenator concentrations (0–12%) using a dynamic shear rheometer. The results show that aging significantly alters mechanical properties of bitumen, while rejuvenators enhance viscosity and restore rheological behavior. These findings underscore the importance of proper rejuvenator application in RAP recycling, ensuring improved binder performance and sustainability in asphalt pavement construction.zeige mehrzeige weniger

Metadaten exportieren

Weitere Dienste

Suche bei Google Scholar
Metadaten
Verfasserangaben:Minnu Shaji, Steffen Riedl, Kim Rodiger, Ronny SorgeORCIDGND
DOI:https://doi.org/10.34726/10624
Titel des übergeordneten Werkes (Englisch):Advances in Materials and Pavement Performance Prediction IV
Verlagsort:Wien
Herausgeber*in:Lukas Eberhardsteiner, Bernhard Hofko, Ronald Blab
Dokumentart:Konferenzveröffentlichung
Sprache:Englisch
Jahr der Erstveröffentlichung:2025
Veröffentlichende Institution:Fachhochschule Potsdam
Urhebende Körperschaft:TU Wien
Datum der Freischaltung:05.08.2026
GND-Schlagwort:Asphalt; Bitumen; Recycling
Seitenzahl:4
Fachbereiche und Zentrale Einrichtungen:FB3 Bauingenieurwesen
DDC-Klassifikation:600 Technik, Medizin, angewandte Wissenschaften / 620 Ingenieurwissenschaften
Open Access:Diamond Open Access
Lizenz (Deutsch): Creative Commons - CC BY - Namensnennung 4.0 International
Einverstanden ✔
Diese Webseite verwendet technisch erforderliche Session-Cookies. Durch die weitere Nutzung der Webseite stimmen Sie diesem zu. Unsere Datenschutzerklärung finden Sie hier.