Effects of epoxy resin on the high‐temperature performance of desulfurized rubber modified asphalt

Author:

Li Junwei12,Su Haobo1ORCID,Yang Dan1,Jia Yanzhen3,Jiao Xiaolei4,Zheng Liansheng5,Lu Wenxue1,Zhao Yongke1ORCID

Affiliation:

1. School of Materials Science and Engineering Tianjin Chengjian University Tianjin People's Republic of China

2. Research Center Tianjin Key Laboratory of Building Green Functional Materials Tianjin People's Republic of China

3. Hebei Jiaotong Vocational and Technical College Shijiazhuang Hebei People's Republic of China

4. Research Center Tianjin Highway Development Service Center Tianjin People's Republic of China

5. Comprehensive Traffic Research Center Tianjin Institute of Transportation Science Tianjin People's Republic of China

Abstract

AbstractIn order to improve the performance of desulphurized rubber modified asphalt, especially the high‐temperature performance, epoxy resin was selected to modify the modified asphalt with three curing agent and accelerator components. The conventional properties, rheological properties, curing effect, process energy, and modification mechanism of epoxy resin—desulfurized rubber modified asphalt were analyzed. The experimental results show that the addition of epoxy resin to asphalt can all improve the high‐temperature performance of modified asphalt. The promoter component (PC) further improves the high‐temperature performance and reduces the viscosity. Among them, diaminodiphenyl sulfone and methylhexahydrophthalic anhydride in a 1:1 mass combination with epoxy resin modified asphalt not only had better high‐temperature performance, but also had excellent low‐temperature performance and ideal curing process. From the results, it can be seen that 5% epoxy resin with mixed curing agent with 3% PC had the best overall performance.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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