DOI: 10.1061/jmcee7.mteng-24198 ISSN: 0899-1561

Rheological Behavior and Coupled Mechanisms of Naphthenic Oil and Desulfurized Rubber Powder in Asphalt Binders

Simin Huang, Jinyi Jiang, Shengxiong Zhou, Jian Ouyang, Xiaolei Jiao

Abstract

The combined utilization of desulfurized rubber powder (DRP) and naphthenic oil (NO) offers a promising strategy to enhance the performance and sustainability of asphalt binders for high-reclaimed asphalt pavement (RAP) applications. This study investigates the rheological behavior and coupled mechanisms of DRP and NO across a wide dosage range. The rheological tests were conducted to evaluate high-temperature, low-temperature, and fatigue performance. Spectroscopic and microscopic analyses, together with molecular dynamics simulations, were employed to explore interfacial interactions and structural evolution. Results reveal that DRP dominates the high-temperature rheological behavior by promoting the formation and densification of nano-colloidal particle networks. In contrast, NO governs low-temperature and fatigue performance by enhancing molecular mobility and stress relaxation. NO also exerts a softening and lubricating effect at the DRP–asphalt interface, facilitating interfacial fusion. However, at high DRP contents, dense nano-structures restrict NO diffusion and lead to localized aggregation, weakening its beneficial effects. These findings provide a mechanistic understanding of the coupled roles of DRP and NO in asphalt binder modification and offer guidance for optimizing formulations tailored for high-RAP mixtures.

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