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◆ Journal of Thermoplastic Composite Materials2026-02-13· Materials science

Rheological evaluation and storage stability of asphalt modified with novel high elastic modifiers

Syed Khaliq Shah, Ying Gao, Abdullah I. Almansour

原始摘要(英文原文)· Original abstract
This study investigates the performance enhancement of styrene-butadiene-styrene (SBS) modified asphalt binders through the incorporation of high-elastic modifiers (HEMs). Three HEMs JC-HEM, GL-HEM, and JT-HEM were evaluated using a comprehensive suite of tests, including rheological assessments, viscosity measurements, chemical interaction analysis, and microscopic characterization. The results demonstrate significant improvements in the viscoelastic properties of SBS binders across a wide range of temperatures and loading conditions. Specifically, JT-HEM-modified binders exhibited a 25% reduction in stiffness and a 40% increase in recovery rates, while maintaining excellent workability due to reduced viscosity. GL-HEM showed a 20% reduction in stiffness and a 35% improvement in recovery rates, with enhanced high-temperature deformation resistance. JC-HEM contributed to a 15% reduction in stiffness and a 30% increase in recovery, offering improved elasticity and compatibility. Fluorescence microscopy and softening point difference tests further confirmed enhanced storage stability and phase homogeneity, particularly for SBS-JT binders. These findings observed that carefully selected HEMs not only mitigate the compatibility issues commonly associated with SBS but also optimize the long-term performance of asphalt binders. This research supports the integration of advanced polymer systems in pavement design to extend service life and reduce maintenance needs under demanding field conditions.
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