Effect of Synthetic Wax on the Rheological Properties of Polymer-Modified Bitumen
Marek Iwański, Małgorzata Cholewińska, Grzegorz Mazurek

TL;DR
This study examines how adding synthetic wax affects the flow and stiffness properties of polymer-modified bitumen during aging processes.
Contribution
The novel contribution is identifying the optimal synthetic wax content (under 2.5%) to reduce stiffness loss in aged polymer-modified bitumen.
Findings
Synthetic wax mitigates stiffness reduction in polymer-modified bitumen during aging.
Optimal wax content is less than 2.5% to maintain binder properties.
Rheological tests showed improved resistance to deformation with wax addition.
Abstract
The goal of this study is to evaluate how the inclusion of synthetic wax, added in 0.5% increments from 1.5% to 3.5%, affects the characteristics of PMB 45/80-65 (polymer-modified bitumen) during both short-term (RTFOT) and long-term (PAV) aging processes. Tests were carried out to assess the fundamental properties of the binder, leading to the determination of the penetration index (PI) and the plasticity range (PR). The binder’s properties were examined at below-freezing operating temperatures, with creep stiffness measured using a bent beam rheometer (BBR) at −10 °C, −16° C, −22 °C, and −28 °C. The rheological properties of the asphaltenes were evaluated based on both linear and nonlinear viscoelasticity. The experimental study explored temperature effects on the rheological properties of composite materials using a DSR dynamic shear rheometer at 40 °C, 60 °C, and 80 °C over a…
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Taxonomy
TopicsAsphalt Pavement Performance Evaluation · Infrastructure Maintenance and Monitoring · Transport Systems and Technology
