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February 6, 2026Langmuir0 citations

Assessment of Degradation in Dynamic Mechanical Properties and Aging Degree of Cement Emulsified Asphalt Mortar under Ultraviolet Aging

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SXSong XuKXKangli XiaoLFLei Fang

Key Points

  • This research assesses how ultraviolet aging affects the dynamic mechanical properties of cement-emulsified asphalt mortar.
  • Analyzed changes in asphalt components due to UV exposure.
  • Established a linear rheological solid model to evaluate viscoelastic properties.
  • Compared aging sensitivity between different asphalt/cement ratios.
  • CA mortar with an asphalt/cement ratio of 0.9 showed 33% higher increases in asphaltenes compared to a ratio of 0.3.
  • Dynamic modulus increased by 47% after 48 days of UV exposure.
  • The peak loss factor decreased significantly, indicating greater degradation in UV-sensitive CA mortars.

Abstract

The ultraviolet-induced aging of cement-emulsified asphalt (CA) mortar in slab ballastless tracks progressively degrades its dynamic mechanical properties, compromising both ride comfort and operational safety. In order to investigate the ultraviolet (UV) aging of CA mortar, the changes in asphalt components and the degradation patterns of its dynamic mechanical properties were analyzed. Moreover, the linear rheological solid model with a fractional derivative, which accurately reflects the viscoelastic properties of CA mortar, was established to evaluate its UV aging degree. Results showed that CA mortar with an asphalt/cement (A/C) ratio of 0.9 exhibited greater aging sensitivity than that with a ratio of 0.3, with 33% higher increases in asphaltenes, 47% higher increases in dynamic modulus, and the peak loss factor also exhibited a greater decrease after 48 days of UV exposure. Cement enhances the UV-aging resistance of CA mortar by physically shielding asphalt through hydration products and by strengthening cement-asphalt interfacial adhesion at lower A/C ratios, which helps limit light fractions migration and volatilization. The linear rheological solid model demonstrated great fitting accuracy for the dynamic mechanical properties of CA mortar under UV aging, with the fractional order (α) serving as a reliable metric for quantifying the degree of aging.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/698585bd8f7c464f230095d3https://doi.org/10.1021/acs.langmuir.5c05586
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