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Fatigue behavior of rubberized asphalt concrete mixtures containing warm asphalt additives

โœ Scribed by Feipeng Xiao; P.E. Wenbin Zhao; Serji N. Amirkhanian


Publisher
Elsevier Science
Year
2009
Tongue
English
Weight
786 KB
Volume
23
Category
Article
ISSN
0950-0618

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โœฆ Synopsis


The long-term performance of pavement is associated with various factors such as pavement structure, materials, traffic loading, and environmental conditions. Improving the understanding of the fatigue behavior of the specific rubberized warm mix asphalt (WMA) is helpful in recycling the scrap tires and saving energy. This study explores the utilization of the conventional fatigue analysis approach in investigating the fatigue life of rubberized asphalt concrete mixtures containing the WMA additive. The fatigue beams were made with one rubber type (ร€40 mesh ambient crumb rubber), two aggregate sources, two WMA additives (Asphamin ร’ and Sasobit ร’ ), and tested at 20 ยฐC. A total of eight mixtures were performed and 29 fatigue beams were tested in this study. The test results indicated that the addition of crumb rubber and WMA additive not only reduced the mixing and compaction temperatures of rubberized asphalt mixtures offset by crumb rubber but also effectively extended the long-term performance of pavement when compared with conventional asphalt pavement. In addition, the exponential function forms are efficient in achieving the correlations between the dissipated energy and load cycle as well as mixture stiffness and load cycle.


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โœ Chandra Akisetty; Feipeng Xiao; Tejash Gandhi; Serji Amirkhanian ๐Ÿ“‚ Article ๐Ÿ“… 2011 ๐Ÿ› Elsevier Science ๐ŸŒ English โš– 441 KB

In recent years, warm mix asphalt (WMA) is widely used for reducing energy requirements and emissions in hot mix asphalt (HMA) industry. In addition, the use of rubberized asphalt in the past has proven to be economical, environmentally sound and effective in improving the performance of pavements a