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Jinci Chen
Jinci Chen
PhD candidate, Heriot-Watt University & British Geological Survey
在 hw.ac.uk 的电子邮件经过验证
标题
引用次数
引用次数
年份
Experimental and numerical study on fracture characteristics and constitutive model of sandstone under freeze-thaw-fatigue
Z Shi, J Li, J Wang, J Chen, H Lin, P Cao
International Journal of Fatigue 166, 107236, 2023
382023
Energy evolution and failure characteristics of red sandstone under discontinuous multilevel fatigue loading
J Wang, J Li, Z Shi, J Chen
International Journal of Fatigue 160, 106830, 2022
302022
Fatigue damage and fracture evolution characteristics of sandstone under multistage intermittent cyclic loading
J Wang, J Li, Z Shi, J Chen
Theoretical and Applied Fracture Mechanics 119, 103375, 2022
272022
Fatigue characteristics and fracture behaviour of sandstone under discontinuous multilevel constant-amplitude fatigue disturbance
J Wang, J Li, Z Shi, J Chen, H Lin
Engineering Fracture Mechanics 274, 108773, 2022
202022
Experimental and numerical investigations on fracture behaviours of cracked chevron notched Brazilian disc (CCNBD) sandstone specimen under cyclic loading
G Ma, J Li, X Zhou, J Chen, Y Zhang, P Qiu
Engineering Fracture Mechanics 271, 108673, 2022
192022
Fracture behavior and damage evolution model of sandstone containing a single pre-existing flaw under discontinuous fatigue loading
Z Shi, J Li, J Wang, J Chen
International Journal of Damage Mechanics 32 (1), 3-27, 2023
182023
Investigation on the characteristics of fracture process zone under cyclic loading: Insights from macro-mesoscopic analysis
J Chen, J Li, J Wang, Z Shi, H Lin, X Zhang
Theoretical and Applied Fracture Mechanics 122, 103616, 2022
162022
Fatigue fracture behaviour and constitutive model of freeze-thaw sandstone under multilevel fatigue loads
Z Shi, J Li, M Wang, J Chen, H Lin, P Cao
Bulletin of Engineering Geology and the Environment 82 (8), 319, 2023
92023
Experimental investigation on Mode I crack growth and damage mechanism of sandstone subjected to cyclic loading
J Chen, J Li, G Ma
Engineering Fracture Mechanics 267, 108429, 2022
92022
A fatigue constitutive model for rock masses based on cross-applications of rheological theory
X Zhang, H Lin, H Liu, S Li, J Li, J Chen
European Journal of Environmental and Civil Engineering 27 (12), 3743-3762, 2023
22023
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