4.6 Article

Analysis of the Influence of Production Method, Crumb Rubber Content and Stabilizer on the Performance of Asphalt Rubber

Journal

APPLIED SCIENCES-BASEL
Volume 10, Issue 16, Pages -

Publisher

MDPI
DOI: 10.3390/app10165447

Keywords

asphalt rubber; crumb rubber content; production method; stabilizer; performance improvement

Funding

  1. Science and Technology Project of Henan Department of Transportation [2020J-2-3]
  2. Science and Technology Project of Shanxi Department of Transportation
  3. Rising Tech Star Project of Shanxi Department of Science and Technology

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Asphalt rubber (AR) is often described as an environmentally friendly material due to the incorporation of recycled rubber from used tires and its improved service life. Its field application is influenced by many factors. In order to evaluate the impact of different factors such as crumb rubber (CR) content, stabilizer and the production method on the performance of rubber powder modified asphalt, two different matrix asphalts were prepared, the basic experiments, control variable methods and several related tests were thereafter conducted. The results showed that a moderate amount of CR could enhance the pavement performance. The suitable CR content was 20-25% for 90# matrix asphalt and 22-26% for 70# matrix asphalt. The stabilizer had a positive impact on the AR's high temperature behavior and was beneficial to the storage of AR, but it did not make a significant influence on low temperature behavior. In addition, different methods brought certain performance differences. Though AR produced with the heat fusion method had better high-temperature performance, the rubber particles would easily disperse and melt in the asphalt during the shearing process, which gave AR more balanced physical performance. This study identifies the shearing method as the optimal choice for site construction and provides a wider application range for asphalt rubber in the road construction field. The selection of parameters depends on the construction areas and performance requirements.

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