Obserwuj
Hai-Tao Wang
Hai-Tao Wang
Zweryfikowany adres z hhu.edu.cn
Tytuł
Cytowane przez
Cytowane przez
Rok
Bond-slip models for CFRP plates externally bonded to steel substrates
HT Wang, G Wu
Composite Structures 184, 1204-1214, 2018
1122018
Experimental study on the fatigue behavior of steel beams strengthened with different fiber-reinforced composite plates
G Wu, HT Wang, ZS Wu, HY Liu, Y Ren
Journal of Composites for Construction 16 (2), 127-137, 2012
1072012
Experimental study on bond behavior between CFRP plates and steel substrates using digital image correlation
HT Wang, G Wu, YT Dai, XY He
Journal of Composites for Construction 20 (6), 04016054, 2016
862016
Fatigue behavior of cracked steel plates strengthened with different CFRP systems and configurations
HT Wang, G Wu, JB Jiang
Journal of Composites for Construction 20 (3), 04015078, 2016
692016
Bond-slip model of the CFRP-steel interface with the CFRP delamination failure
Y Pang, G Wu, H Wang, D Gao, P Zhang
Composite Structures 256, 113015, 2021
542021
Determination of the bond–slip behavior of CFRP-to-steel bonded interfaces using digital image correlation
HT Wang, G Wu, YT Dai, XY He
Journal of Reinforced Plastics and Composites 35 (18), 1353-1367, 2016
512016
Effect of FRP configurations on the fatigue repair effectiveness of cracked steel plates
HT Wang, G Wu, ZS Wu
Journal of Composites for Construction 18 (1), 04013023, 2014
502014
Debonding development in cracked steel plates strengthened by CFRP laminates under fatigue loading: experimental and boundary element method analysis
L Hu, Y Wang, P Feng, HT Wang, H Qiang
Thin-Walled Structures 166, 108038, 2021
472021
Experimental study on the bond behavior between CFRP plates and steel substrates under fatigue loading
HT Wang, G Wu, YY Pang, JW Shi, HM Zakari
Composites Part B: Engineering 176, 107266, 2019
472019
Experimental study on the bond behavior of CFRP-steel interfaces under quasi-static cyclic loading
Y Pang, G Wu, H Wang, Z Su, X He
Thin-Walled Structures 140, 426-437, 2019
442019
Flexural strengthening of damaged steel beams with prestressed CFRP plates using a novel prestressing system
HT Wang, ZN Bian, MS Chen, L Hu, Q Wu
Engineering Structures 284, 115953, 2023
422023
Theoretical and numerical study on stress intensity factors for FRP-strengthened steel plates with double-edged cracks
HT Wang, G Wu, YY Pang
Sensors 18 (7), 2356, 2018
392018
Crack propagation prediction of double-edged cracked steel beams strengthened with FRP plates
HT Wang, G Wu
Thin-Walled Structures 127, 459-468, 2018
362018
Strengthening of cracked DH36 steel plates by CFRP sheets under fatigue loading at low temperatures
L Hu, M Li, T Yiliyaer, W Gao, H Wang
Ocean Engineering 243, 110203, 2022
342022
Influences of the joint and epoxy adhesive type on the CFRP-steel interfacial behavior
HT Wang, SS Liu, QL Liu, YY Pang, JW Shi
Journal of Building Engineering 43, 103167, 2021
342021
Pullout behaviors of basalt fiber-reinforced polymer bars with mechanical anchorages for concrete structures exposed to seawater
J Shi, S Sun, X Cao, H Wang
Construction and Building Materials 373, 130866, 2023
322023
Interfacial bond-slip degradation relationship between CFRP plate and steel plate under freeze-thaw cycles
Y Pang, G Wu, H Wang, Y Liu
Construction and Building Materials 214, 242-253, 2019
302019
Experimental study on the flexural performance of prestressed RC beams with post-tensioned CFRP strands
HT Wang, C Tang, MS Chen, J Shi, XY Cao
Engineering Structures 309, 118118, 2024
272024
Experimental study on the flexural behavior of large-scale reinforced concrete beams strengthened with prestressed CFRP plates
HT Wang, SS Liu, CY Zhu, H Xiong, GW Xu
Journal of Composites for Construction 26 (6), 04022076, 2022
252022
Experimental study on the bond behavior of the CFRP-steel interface under the freeze–thaw cycles
YY Pang, G Wu, HT Wang, ZL Su, XY He
Journal of Composite Materials 54 (1), 13-29, 2020
232020
Nie można teraz wykonać tej operacji. Spróbuj ponownie później.
Prace 1–20