Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6667857 | Journal of Industrial and Engineering Chemistry | 2017 | 20 Pages |
Abstract
In this study, a liquid state sulfur polymer (LSP) was employed as asphalt pavement materials. The LSP/epoxy asphalt (LSPA) was easily fabricated by mixing LSP and epoxy resin at room temperature. The workability of as-mixed LSP/epoxy mixture was explored by controlling the ratio of epoxy. The asphalt mixture with the epoxy content below 50Â wt% exhibited reliable flowability above approximately 12.5Â cm. The solidification of LSP was successfully accompanied by simultaneous curing of epoxy. For practical application of pavement on road, the Marshall stability, indirect tensile strength and wheel tracking test were performed. The Marshall stability and indirect tensile strength of the LSPA exhibited an approximate 2-fold increase compared to neat asphalt. Moreover, exceptional durability of the LSPA was achieved through the controllable crushed depth of the pavement under wheel passes of 25,000 cycles. For practical repairing test on the road, the LSPA was cast on a pothole prepared on asphalt road. Our as-cast asphalt materials were suitable to heal potholes with seamless interface and the hardening was accomplished within a very short time of 1Â h. The hardened LSPA exhibited excellent adhesion strength of approximately 1.95Â MPa, enabling the elimination of gaps arising from traffic cycles and climate variation.
Related Topics
Physical Sciences and Engineering
Chemical Engineering
Chemical Engineering (General)
Authors
Hyuk Kwon, Albert S. Lee, Jin Hong Lee, No Kyung Park, Goo Dae Kim, Bongsuk Cho, Sung-Churl Choi, Seunggun Yu,