Effect of Curing Reaction Behaviors of Warm Mix Epoxy Asphalt Concrete on Its Field Compaction Characteristics Using Discrete-Element Method

被引:11
作者
Liu, Yang [1 ]
Qian, Zhendong [1 ]
Yang, Yuming [1 ]
Huang, Qibo [1 ]
Zhang, Xiangfei [1 ]
机构
[1] Southeast Univ, Intelligent Transportat Syst Res Ctr, 2 Southeast Univ Rd, Nanjing 211189, Peoples R China
关键词
Steel bridge deck; Warm mix epoxy asphalt concrete; Curing reaction; Field compaction characteristic; Discrete-element method (DEM); FRACTURE-BEHAVIOR; SIMULATION; MIXTURES; MODEL;
D O I
10.1061/(ASCE)MT.1943-5533.0004196
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The irreversible curing reaction of thermosetting epoxy asphalt mixture (EAM) brings challenges to the construction of epoxy asphalt concrete (EAC) on the steel bridge deck, and the curing reaction degree (CRD) of EAM before compaction has a great influence on the compaction quality. The objective of this study is to investigate the effects of excessive CRD condition and uneven CRD condition of warm mix EAC on its field compaction. To achieve this goal, a field compaction model for EAC on a steel bridge deck was developed using discrete-element method (DEM) first. In the DEM model, a two-stage contact model that combined Burges model with the parallel bond model was used to characterize the thermosetting and viscoelastic behaviors of EAM, and the values of the contact model's parameters under different CRDs were determined by a trial calculation method based on Superpave gyratory compaction test. Subsequently, the field compaction process of cured EAM with different CRDs was simulated by changing the contact parameters' value, and the effects of excessive CRD condition and uneven CRD condition on the compaction quality were analyzed. Results show that the highly cured EAM is hard to be compacted unless larger compaction loads are adopted in the repeated compaction. Uneven CRD of EAM is prone to generate the mixture agglomeration, and it has negative effects on the compaction quality of the surrounding EAM.
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页数:14
相关论文
共 37 条
[21]   Alternate uses of epoxy asphalt on bridge decks and roadways [J].
Lu, Qing ;
Bors, John .
CONSTRUCTION AND BUILDING MATERIALS, 2015, 78 :18-25
[22]   Construction Technology of Warm and Hot Mix Epoxy Asphalt Paving for Long-Span Steel Bridge [J].
Luo, Sang ;
Liu, Ziming ;
Yang, Xu ;
Lu, Qing ;
Yin, Jun .
JOURNAL OF CONSTRUCTION ENGINEERING AND MANAGEMENT, 2019, 145 (12)
[23]   Finite element modelling of field compaction of hot mix asphalt. Part II: Applications [J].
Masad, Eyad ;
Scarpas, A. ;
Rajagopal, Kumbakonam R. ;
Kassem, Emad ;
Koneru, Saradhi ;
Kasbergen, Cor .
INTERNATIONAL JOURNAL OF PAVEMENT ENGINEERING, 2016, 17 (01) :24-38
[24]   Effects of Paver Stoppage on Temperature Segregation in Asphalt Pavements [J].
Mohammad, Louay N. ;
Hassan, Marwa M. ;
Kim, Minkyum .
JOURNAL OF MATERIALS IN CIVIL ENGINEERING, 2017, 29 (02)
[25]  
National Asphalt Pavement Association, 1982, DEV MARSH PROC DES A
[26]   A DEM hard-core soft-shell model for the simulation of concrete flow [J].
Remond, Sebastien ;
Pizette, Patrick .
CEMENT AND CONCRETE RESEARCH, 2014, 58 :169-178
[27]   Investigation of asphalt joint compaction using discrete element simulation [J].
Roozbahany, Ehsan Ghafoori ;
Partl, Manfred N. .
ROAD MATERIALS AND PAVEMENT DESIGN, 2019, 20 (07) :1722-1734
[28]   Measurement of coarse aggregates movement characteristics within asphalt mixture using digital image processing methods [J].
Shi, Liwan ;
Wang, Duanyi ;
Jin, Changning ;
Li, Ben ;
Liang, Hehao .
MEASUREMENT, 2020, 163
[29]   Curing behavior and mechanical properties of an eco-friendly cold-mixed epoxy asphalt [J].
Si, Jingjing ;
Li, Yang ;
Yu, Xin .
MATERIALS AND STRUCTURES, 2019, 52 (04)
[30]  
Taghavi R., 2011, 2nd Int. FLAC/DEM Symp, P791