4.6 Article

Aging Resistance of Silica Fume/Styrene-Butadiene-Styrene Composite-Modified Asphalt

Journal

MATERIALS
Volume 14, Issue 21, Pages -

Publisher

MDPI
DOI: 10.3390/ma14216536

Keywords

silica fume; composite-modified asphalt; rheological properties; aging resistance; aging mechanism

Funding

  1. Science and technology project of Department of Transportation of Heilongjiang Province [2015hljjt017]

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The study found that adding 6% silica fume to composite-modified asphalt can significantly improve the aging resistance and low-temperature crack resistance of the asphalt.
The influences of silica fume content and aging on the rheological properties of silica fume/styrene-butadiene-styrene composite-modified asphalts were investigated via rolling thin-film oven test simulations. The asphalts rheological properties before and after aging were measured using three-major-indices, dynamic shear rheology, and bending beam rheometer tests. Fourier transform infrared spectroscopy was used to examine the changes in the functional groups of the asphalt. The silica fume did not chemically react with the modified asphalt, and its original structure was maintained. The aging resistance improved significantly after adding the silica fume. At 6% silica fume content, the relaxation of the asphalt was the highest, indicating that the asphalt had the best low-temperature crack resistance at this mixing proportion. Furthermore, the carbonyl index value of this sample exhibited the smallest increment among all of the samples, and this asphalt sample had the strongest short-term aging resistance. Thus, the optimum silica fume content in the composite-modified asphalt was determined to be 6%. This information may be used to fabricate an asphalt mixture that can improve the service life and aging resistance of pavements.

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