Study on the Self-Healing Performance of Polyurethane/Graphene Oxide-Modified Asphalt Based on Dynamic Disulfide Bonds. [PDF]
Li G, Wang M, Yan K, Song X.
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Rheological Properties and Influence Mechanisms of Twin-Screw Activated Rubber Powder Composite SBS-Modified Asphalt. [PDF]
Zhao Y +7 more
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Effects of Complex Environmental Conditions on Fatigue Self-Healing Properties of Fast-Melting SBS-Modified Asphalt. [PDF]
Yue J +5 more
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Investigation of Compatibility Mechanisms and Diffusion Behavior of Polymer SBS-Modified Asphalt Compatibilizer Using Molecular Dynamics Simulation. [PDF]
Li N +5 more
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A Rheological Study of the High-Temperature Properties of Fast-Melting SBS/Epoxy-Modified Asphalt Binders. [PDF]
Feng L +6 more
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Aging Behavior of Styrene-Butadiene Rubber (SBR)-Modified Asphalt Under the Coupled Effects of Intense UV Radiation and Large Temperature Differences. [PDF]
Xu Y, Tian B, Zhu H, Wang J.
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Influence of Mineral Powder Content and Gradation on the Aging and High-Temperature Rheological Properties of Styrene-Butadiene-Styrene (SBS) Modified Asphalt. [PDF]
Xing C +5 more
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Effect of asphalt modified with polyethylene fiber on asphaltic characteristics
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Polymer modified asphalt binders
Construction and Building Materials, 2007Abstract This paper is a review of research that has been conducted on polymer modified binders over the last three decades. Polymer modification of asphalt binders has increasingly become the norm in designing optimally performing pavements, particularly in the United States, Canada, Europe and Australia.
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