The effects of moisture susceptibility and ageing conditions on nano-silica/polymer-modified asphalt mixtures
•We investigate the effect of ageing and moisture susceptibility on nano-silica/PMA.•The presence of nano-silica reduces susceptibility to moisture damage of PMA.•The strength of nano-silica/PMA is increased.•Susceptibility to oxidative ageing also is significantly reduced. This study investigates t...
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Veröffentlicht in: | Construction & building materials 2014-12, Vol.72, p.139-147 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | •We investigate the effect of ageing and moisture susceptibility on nano-silica/PMA.•The presence of nano-silica reduces susceptibility to moisture damage of PMA.•The strength of nano-silica/PMA is increased.•Susceptibility to oxidative ageing also is significantly reduced.
This study investigates the performance characteristics of polymer-modified asphalt mixture (PMA) with the addition of nano-silica particles. Polymer-modified asphalt, PG-76, was mixed with nano-silica at concentrations of 0%, 2% and 4% by weight of asphalt binder. Asphalt mixture tests such as moisture susceptibility, resilient modulus and dynamic creep were conducted to evaluate the performance of PMA mixed with nano-silica under various ageing and moisture susceptibility conditions. During the mixing process, the binders were kept at 160°C and blended using a shear rate of 1500rpm (rpm) for approximately 1h. Microstructure examinations of the asphalt binders were then carried out using scanning electron microscopy (SEM). The SEM images show that the nano-silica particles disperse well in the asphalt binder matrix. Nano-silica reduces the susceptibility to moisture damage and increases the strength of asphalt mixes. It is also observed that fatigue and rutting resistance are enhanced for PMA mixed with nano-silica particles. Ageing index values show that the susceptibility to oxidative ageing is significantly reduced with the increase of nano-silica content, particularly in the case of long-term ageing. The addition of 4% nano-silica with PMA appears to have the greatest potential for beneficial modification of the binder. |
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ISSN: | 0950-0618 |
DOI: | 10.1016/j.conbuildmat.2014.09.014 |