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Tao Chen (陈涛)
Tao Chen (陈涛)
Professor of Department of Structural Engineering, Tongji University, Shanghai, China
Verified email at tongji.edu.cn - Homepage
Title
Cited by
Cited by
Year
Fatigue behavior of CFRP strengthened steel plates with different degrees of damage
QQ Yu, T Chen, XL Gu, XL Zhao, ZG Xiao
Thin-Walled Structures 69 (8), 10-17, 2013
1342013
Mechanical behavior of FRP-strengthened concrete columns subjected to concentric and eccentric compression loading
X Song, X Gu, Y Li, T Chen, W Zhang
Journal of Composites for Construction 17 (3), 336-346, 2013
1092013
Tests on cracked steel plates with different damage levels strengthened by CFRP laminates
QQ Yu, XL Zhao, R Al-Mahaidi, ZG Xiao, T Chen, XL Gu
International Journal of Structural Stability and Dynamics 14 (06), 1450018, 2014
672014
Bond behavior of CFRP-steel double-lap joints exposed to marine atmosphere and fatigue loading
QQ Yu, RX Gao, XL Gu, XL Zhao, T Chen
Engineering Structures 175, 76-85, 2018
562018
Fatigue strength evaluation of transverse fillet welded joints subjected to bending loads
ZG Xiao, T Chen, XL Zhao
International Journal of Fatigue 38 (5), 57–64, 2011
532011
Study on fatigue behavior of strengthened non-load-carrying cruciform welded joints using carbon fiber sheets
T Chen, YU QIAN-QIAN, GU XIANG-LIN, XL Zhao
International Journal of Structural Stability and Dynamics 12 (01), 179-194, 2012
492012
Crack propagation prediction of CFRP retrofitted steel plates with different degrees of damage using BEM
QQ Yu, XL Zhao, T Chen, XL Gu, ZG Xiao
Thin-Walled Structures 82, 145-158, 2014
482014
Experimental study on mixed-mode fatigue behavior of center cracked steel plates repaired with CFRP materials
T Chen, C Huang, L Hu, X Song
Thin-Walled Structures 135, 486-493, 2019
332019
Heat activated SMA-CFRP composites for fatigue strengthening of cracked steel plates
L Li, T Chen, X Gu, E Ghafoori
Journal of Composites for Construction 24 (6), 04020060, 2020
322020
Stress intensity factors (KI) of cracked non-load-carrying cruciform welded joints repaired with CFRP materials
T Chen, QQ Yu, XL Gu, G Nie
Composites Part B: Engineering 45 (1), 1629–1635, 2012
312012
Behavior of steel-concrete composite cantilever beams with web openings under negative moment
T Chen, X Gu, H Li
International Journal of Steel Structures 11 (1), 39-49, 2011
302011
Finite element analysis of fatigue crack growth in CFRP-repaired four-point bend specimens
C Huang, T Chen, S Feng
Engineering Structures 183, 398-407, 2019
292019
Boundary element analysis of edge cracked steel plates strengthened by CFRP laminates
QQ Yu, T Chen, XL Gu, XL Zhao
Thin-Walled Structures 100, 147-157, 2016
292016
Fatigue bending test on grouted connections for monopile offshore wind turbines
T Chen, X Wang, G Yuan, J Liu
Marine Structures 60, 52-71, 2018
282018
Fatigue improvements of cracked rectangular hollow section steel beams strengthened with CFRP plates
T Chen, X Wang, M Qi
Thin-Walled Structures 122, 371-377, 2018
282018
Fatigue performance test on inclined central cracked steel plates repaired with CFRP strand sheets
Chen, T., Li, L. Z, Zhang, N. X., Song, X. B., Hidekuma, Y.
Thin-Walled Structures 130, 414-423, 2018
262018
Experimental study on fatigue behavior of cracked rectangular hollow-section steel beams repaired with prestressed CFRP plates
T Chen, XL Gu, M Qi, QQ Yu
Journal of Composites for Construction 22 (5), 04018034, 2018
252018
Numerical analysis of fatigue performance of CFRP–repaired steel plates with central inclined cracks
L Li, T Chen, N Zhang
Engineering Structures 185, 194-202, 2019
242019
Compressive characteristics of damaged circular hollow section (CHS) steel columns repaired by CFRP or grout jacketing
C Huang, T Chen, X Wang
Thin-Walled Structures 119, 635-645, 2017
242017
Boundary element analysis of fatigue behavior for CFRP-strengthened steel plates with center inclined cracks
T Chen, L Hu, N Zhang, QQ Yu
Thin-Walled Structures 125, 164-171, 2018
232018
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