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April 3, 2026International Journal of Transportation Science and Technology0 citationsOpen Access

Investigation on the performance effects of hydroxyl-terminated polybutadiene polyurethane modified asphalt after short-term and long-term aging

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JRJiaxing RenHLHui LiXZXin Zuo

Key Points

  • The aim is to evaluate how hydroxyl-terminated polybutadiene polyurethane affects the performance and aging of asphalt.
  • Employed hydroxyl-terminated polybutadiene polyurethane as a modifier for asphalt.
  • Analyzed microstructural changes using fluorescence microscopy and Fourier transform infrared spectroscopy.
  • Evaluated high- and low-temperature performance, fatigue resistance, and adhesion properties of modified asphalt compared to base and SBS-modified asphalt.
  • Aging behavior of HTPB-PUMA was similar to that of SBS-modified asphalt.
  • Polyurethane incorporation reduced negative effects of aging on performance properties.
  • HTPB-PUMA showed improved high-temperature properties, low-temperature relaxation, fatigue resistance, and pull-off strength.

Abstract

Polyurethane can significantly improve the asphalt’s high-temperature performance, mechanical properties, and water stability. However, aging is an unavoidable process for asphalt binders during construction. This study employed hydroxyl-terminated polybutadiene (HTPB) polyurethane as a polymer modifier to examine the impact of aging on the microstructure and rheological properties of polyurethane-modified asphalt (PUMA). Fluorescence microscopy and Fourier transform infrared spectroscopy were used to analyze the microstructural changes before and after aging. In addition, the high- and low-temperature performance, fatigue resistance, and adhesion properties of HTPB-PUMA were systematically evaluated and compared with those of base asphalt and styrene-butadiene-styrene (SBS) modified asphalt. Results indicated that the aging behavior of HTPB-PUMA was similar to that of SBS-modified asphalt, characterized by asphalt phase aging and polymer phase degradation. The incorporation of polyurethane mitigated the negative effects of aging on high-temperature properties, low-temperature relaxation, fatigue resistance, and pull-off strength, thereby improving the overall aging resistance of asphalt. This study provides scientific guidance for advancing the anti-aging performance of PUMA in pavement applications.

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Cite This Study

Ren et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ebc5a333a821460d4a2https://doi.org/10.1016/j.ijtst.2025.10.006
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Research on Aging Characteristics and Interfacial Adhesion Performance of Polyurethane-Modified Asphalt2025 · 5 citations
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  4. 4Advances in Polyurethane-Modified Asphalt via the Prepolymer Method: Molecular Design, Modification Mechanisms, Structural Evolution, and Performance Optimisation2026
  5. 5Mechanical Properties and Modification Mechanism of Thermosetting Polyurethane-Modified Asphalt2025 · 10 citations