Journal Published Online: 15 November 2018
Volume 48, Issue 4

Preparation and Properties of Waterborne Epoxy–Modified Emulsified Asphalt Binder (WEMEAB)

CODEN: JTEVAB

Abstract

The objective of this research is to study the properties of waterborne epoxy–modified emulsified asphalt binder (WEMEAB). The WEMEAB was prepared with a method of preemulsification and modification. The optimum asphalt-water ratio (ratio of base asphalt binder to emulsifier), emulsifier content, and waterborne epoxy content were determined through an orthogonal test with three factors and three levels. Based on the penetration system, the high- and low-temperature properties and storage stability of WEMEAB were evaluated. The distribution of waterborne epoxy in the modified emulsified asphalt binder and the microstructure of WEMEAB were observed through the Fluorescence Optical Microscopy (FOM) and Atomic Force Microscopy (AFM) tests. The test results indicated that the high- and low-temperature properties of WEMEAB were noticeably improved and that the waterborne epoxy was distributed uniformly in the modified emulsified asphalt binder with an asphalt-water ratio of 65:35, 4 % waterborne epoxy and 1.4 % emulsifier. The FOM and AFM images showed that cross-linking and interpenetration network structure and “bee-like” structures had formed on the surface of the WEMEAB.

Author Information

Ji, Jie
School of Civil Engineering and Transportation, Beijing University of Civil Engineering and Architecture & Beijing Advanced Innovation Center for Future Urban Design, Beijing, China
Yao, Hui
Beijing Key Laboratory of Traffic Engineering, Beijing University of Technology, Chaoyang, Beijing, China Department of Civil and Environmental Engineering, Michigan Technological University, Houghton, MI, USA
Zheng, Wenhua
School of Civil Engineering and Transportation, Beijing University of Civil Engineering and Architecture & Beijing Advanced Innovation Center for Future Urban Design, Beijing, China
Suo, Zhi
Beijing University of Civil Engineering and Architecture, Beijing Urban Transportation Infrastructure Engineering Technology Research Center & Beijing Collaborative Innovation Center for Metropolitan Transportation, Xicheng Qu, Beijing, China
Xu, Ying
Beijing University of Civil Engineering and Architecture, Beijing Urban Transportation Infrastructure Engineering Technology Research Center & Beijing Collaborative Innovation Center for Metropolitan Transportation, Xicheng Qu, Beijing, China
Han, Song
Department of Civil and Environmental Engineering, Michigan Technological University, Houghton, MI, USA
Xu, Shifa
Beijing University of Civil Engineering and Architecture, Beijing Urban Transportation Infrastructure Engineering Technology Research Center & Beijing Collaborative Innovation Center for Metropolitan Transportation, Xicheng Qu, Beijing, China
You, Zhanping
Department of Civil and Environmental Engineering, Michigan Technological University, Houghton, MI, USA
Pages: 16
Price: $25.00
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Stock #: JTE20160572
ISSN: 0090-3973
DOI: 10.1520/JTE20160572