Takip et
Fuyuan Gong
Başlık
Alıntı yapanlar
Alıntı yapanlar
Yıl
Empirical estimation of pore size distribution in cement, mortar, and concrete
F Gong, D Zhang, E Sicat, T Ueda
Journal of Materials in Civil Engineering 26 (7), 04014023, 2014
1492014
Modeling of water transport in highly saturated concrete with wet surface during freeze/thaw
F Gong, S Jacobsen
Cement and concrete research 115, 294-307, 2019
1212019
Experimental investigation of the deformational behavior of the interfacial transition zone (ITZ) in concrete during freezing and thawing cycles
E Sicat, F Gong, T Ueda, D Zhang
Construction and Building Materials 65, 122-131, 2014
1072014
Stress analysis for concrete materials under multiple freeze-thaw cycles
F Gong, E Sicat, D Zhang, T Ueda
Journal of advanced concrete technology 13 (3), 124-134, 2015
1012015
Multi-scale simulation of freeze-thaw damage to RC column and its restoring force characteristics
F Gong, K Maekawa
Engineering Structures 156, 522-536, 2018
992018
Effects of low temperatures and cryogenic freeze-thaw cycles on concrete mechanical properties: A literature review
H Lin, Y Han, S Liang, F Gong, S Han, C Shi, P Feng
Construction and Building Materials 345, 128287, 2022
962022
Multi-scale and multi-chemo-physics lifecycle evaluation of structural concrete under environmental and mechanical impacts
Z Wang, F Gong, K Maekawa
Journal of Intelligent Construction 1 (1), 1-18, 2023
882023
Computational modeling of combined frost damage and alkali-silica reaction on the durability and fatigue life of RC bridge decks
F Gong, X Sun, Y Takahashi, K Maekawa, W Jin
Journal of Intelligent Construction 1 (1), 1-14, 2023
802023
Mesoscale simulation of fatigue behavior of concrete materials damaged by freeze-thaw cycles
F Gong, T Ueda, Y Wang, D Zhang, Z Wang
Construction and building materials 144, 702-716, 2017
702017
Mesoscale simulation of deformation for mortar and concrete under cyclic freezing and thawing stress
F Gong, Y Wang, D Zhang, T Ueda
Journal of Advanced Concrete Technology 13 (6), 291-304, 2015
682015
Prediction and optimization model of sustainable concrete properties using machine learning, deep learning and swarm intelligence: A review
S Wang, P Xia, K Chen, F Gong, H Wang, Q Wang, Y Zhao, W Jin
Journal of Building Engineering 80, 108065, 2023
642023
Computational methods of mass transport in concrete under stress and crack conditions: a review
X Sun, S Wang, J Jin, Z Wang, F Gong
Journal of Intelligent Construction 1 (2), 1-20, 2023
622023
Change of the coefficient of thermal expansion of mortar due to damage by freeze thaw cycles
E Sicat, F Gong, D Zhang, T Ueda
Journal of Advanced Concrete Technology 11 (12), 333-346, 2013
592013
Mechanical properties of concrete with smeared cracking by alkali-silica reaction and freeze-thaw cycles
F Gong, Y Takahashi, I Segawa, K Maekawa
Cement and Concrete Composites 111, 103623, 2020
582020
Meso-scale mechanical deterioration of mortar due to sodium chloride attack
Y Wang, T Ueda, F Gong, D Zhang
Cement and Concrete Composites 96, 163-173, 2019
502019
Strong coupling of freeze-thaw cycles and alkali silica reaction-multi-scale poro-mechanical approach to concrete damages
F Gong, Y Takahashi, K Maekawa
Journal of Advanced Concrete Technology 15 (7), 346-367, 2017
502017
Multi objective optimization of recycled aggregate concrete based on explainable machine learning
S Wang, P Xia, F Gong, Q Zeng, K Chen, Y Zhao
Journal of Cleaner Production 445, 141045, 2024
442024
Intelligent mix design of recycled brick aggregate concrete based on swarm intelligence
S Wang, P Xia, Z Wang, T Meng, F Gong
Journal of Building Engineering 71, 106508, 2023
422023
RBSM-based mesoscale study of mechanical properties and frost damage behaviors for recycled fine aggregate concrete
D Zhi, P Xia, S Wang, F Gong, W Cao, D Wang, T Ueda
Construction and Building Materials 416, 135136, 2024
412024
Modeling and mesoscale simulation of ice-strengthened mechanical properties of concrete at low temperatures
F Gong, Y Wang, T Ueda, D Zhang
Journal of Engineering Mechanics 143 (6), 04017022, 2017
412017
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