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Zepeng Fan
Zepeng Fan
Verified email at isac.rwth-aachen.de
Title
Cited by
Cited by
Year
Study on self-healing microcapsule containing rejuvenator for asphalt
B Xue, H Wang, J Pei, R Li, J Zhang, Z Fan
Construction and Building Materials 135, 641-649, 2017
822017
Prediction of dynamic modulus of asphalt mixture using micromechanical method with radial distribution functions
J Zhang, Z Fan, H Wang, W Sun, J Pei, D Wang
Materials and Structures 52, 1-12, 2019
802019
Low temperature and fatigue characteristics of treated crumb rubber modified asphalt after a long term aging procedure
Z Chen, T Wang, J Pei, S Amirkhanian, F Xiao, Q Ye, Z Fan
Journal of Cleaner Production 234, 1262-1274, 2019
762019
Evaluation of thermo-mechanical properties of graphene/carbon-nanotubes modified asphalt with molecular simulation
X Zhou, X Zhang, S Xu, S Wu, Q Liu, Z Fan
Molecular Simulation 43 (4), 312-319, 2017
762017
Exploiting the synergetic effects of graphene and carbon nanotubes on the mechanical properties of bitumen composites
Q Yang, Y Qian, Z Fan, J Lin, D Wang, J Zhong, M Oeser
Carbon 172, 402-413, 2021
562021
Evaluation of asphalt–aggregate interaction based on the rheological properties
J Zhang, Z Fan, D Hu, Z Hu, J Pei, W Kong
International Journal of Pavement Engineering 19 (7), 586-592, 2018
562018
Effects of freeze-thaw cycles on fatigue performance of asphalt mixture and development of fatigue-freeze-thaw (FFT) uniform equation
Z Fan, H Xu, J Xiao, Y Tan
Construction and Building Materials 242, 118043, 2020
412020
Improving the polishing resistance of cement mortar by using recycled ceramic
G Lu, Z Fan, Z Sun, P Liu, Z Leng, D Wang, M Oeser
Resources, Conservation and Recycling 158, 104796, 2020
402020
Using thermodynamic parameters to study self-healing and interface properties of crumb rubber modified asphalt based on molecular dynamics simulation
D Hu, J Pei, R Li, J Zhang, Y Jia, Z Fan
Frontiers of Structural and Civil Engineering 14, 109-122, 2020
382020
Micromechanics prediction of effective modulus for asphalt mastic considering inter-particle interaction
J Pei, Z Fan, P Wang, J Zhang, B Xue, R Li
Construction and Building Materials 101, 209-216, 2015
372015
Molecular dynamics simulation to investigate the interaction of asphaltene and oxide in aggregate
R Li, H Du, Z Fan, J Pei
Advances in Materials Science and Engineering 2016, 2016
362016
Development and validation of nonlinear viscoelastic damage (NLVED) model for three-stage permanent deformation of asphalt concrete
J Zhang, Z Fan, K Fang, J Pei, L Xu
Construction and Building Materials 102, 384-392, 2016
342016
Multiscale understanding of interfacial behavior between bitumen and aggregate: From the aggregate mineralogical genome aspect
Z Fan, J Lin, Z Chen, P Liu, D Wang, M Oeser
Construction and Building Materials 271, 121607, 2021
292021
Nano-scale analysis of moisture diffusion in asphalt-aggregate interface using molecular simulations
X Zhou, TB Moghaddam, M Chen, S Wu, S Adhikari, F Wang, Z Fan
Construction and Building Materials 285, 122962, 2021
272021
Using recycled waste glass fiber reinforced polymer (GFRP) as filler to improve the performance of asphalt mastics
J Lin, Z Guo, B Hong, J Xu, Z Fan, G Lu, D Wang, M Oeser
Journal of Cleaner Production 336, 130357, 2022
252022
Study on interfacial debonding between bitumen and aggregate based on micromechanical damage model
Z Fan, C Du, P Liu, D Wang, M Oeser
International Journal of Pavement Engineering 23 (2), 340-348, 2022
252022
Multiscale validation of the applicability of micromechanical models for asphalt mixture
J Zhang, Z Fan, J Pei, R Li, M Chang
Advances in Materials Science and Engineering 2015, 2015
242015
Micromechanical model for asphalt mixture coupling inter-particle effect and imperfect interface
X Gao, Z Fan, J Zhang, S Liu
Construction and Building Materials 148, 696-703, 2017
212017
Study on the effects of reversible aging on the low temperature performance of asphalt binders
J Xu, Z Fan, J Lin, P Liu, D Wang, M Oeser
Construction and Building Materials 295, 123604, 2021
202021
Predicting the low-temperature performance of asphalt binder based on rheological model
J Xu, Z Fan, J Lin, X Yang, D Wang, M Oeser
Construction and Building Materials 302, 124401, 2021
192021
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Articles 1–20