Suivre
Xiaogang Wang
Titre
Citée par
Citée par
Année
Kinematic and thermal characteristics of Lüders and Portevin-Le Châtelier bands in a medium Mn transformation-induced plasticity steel
XG Wang, L Wang, MX Huang
Acta Materialia 124, 17-29, 2017
1932017
Quantitative Thermographic Methodology for fatigue assessment and stress measurement
XG Wang, V Crupi, XL Guo, YG Zhao
International Journal of Fatigue 32 (12), 1970-1976, 2010
1012010
In-situ evaluation of Lüders band associated with martensitic transformation in a medium Mn transformation-induced plasticity steel
XG Wang, L Wang, MX Huang
Materials Science and Engineering: A 674, 59-63, 2016
682016
Quantitative Thermographic Methodology for fatigue life assessment in a multiscale energy dissipation framework
XG Wang, V Crupi, C Jiang, E Guglielmino
International Journal of Fatigue 81, 249-256, 2015
572015
A new multiaxial fatigue model for life prediction based on energy dissipation evaluation
ES Feng, XG Wang, C Jiang
International Journal of Fatigue 122, 1-8, 2019
552019
Fracture mechanisms of a Mo alloyed CoCrFeNi high entropy alloy: in-situ SEM investigation
WP Li, XG Wang, B Liu, QH Fang, C Jiang
Materials Science and Engineering: A 723, 79-88, 2018
512018
Energy-based approach for fatigue life prediction of pure copper
XG Wang, V Crupi, C Jiang, ES Feng, E Guglielmino, CS Wang
International Journal of Fatigue 104, 243-250, 2017
502017
An energy dissipation-based fatigue crack growth model
XG Wang, HR Ran, C Jiang, QH Fang
International Journal of Fatigue 114, 167-176, 2018
492018
Microscopic strain partitioning in Lüders band of an ultrafine-grained medium Mn steel
XG Wang, CH Liu, BB He, C Jiang, MX Huang
Materials Science and Engineering: A 761, 138050, 2019
462019
The dual role of martensitic transformation in fatigue crack growth
X Wang, C Liu, B Sun, D Ponge, C Jiang, D Raabe
Proceedings of the National Academy of Sciences of the United States of …, 2022
352022
A microplasticity evaluation method in very high cycle fatigue
XG Wang, ES Feng, C Jiang
International Journal of Fatigue 94, 6-15, 2017
352017
Effects of the stress state on plastic deformation and ductile failure: Experiment and numerical simulation using a newly designed tension‐shear specimen
XW Zhang, JF Wen, XC Zhang, XG Wang, ST Tu
Fatigue & Fracture of Engineering Materials & Structures 42, 2079–2092, 2019
332019
On the microstructures and fatigue behaviors of 316L stainless steel metal injection molded with gas-and water-atomized powders
Y Zhang, E Feng, W Mo, Y Lv, R Ma, S Ye, X Wang, P Yu
Metals 8 (11), 893, 2018
322018
Extraordinary Lüders-strain-rate in medium Mn steels
XG Wang, BB He, CH Liu, C Jiang, MX Huang
Materialia 6, 100288, 2019
262019
Infrared thermography coupled with digital image correlation in studying plastic deformation on the mesoscale level
XG Wang, JF Witz, A El Bartali, C Jiang
Optics and Lasers in Engineering 86, 264-274, 2016
262016
A structural stress‐based critical plane method for multiaxial fatigue life estimation in welded joints
C Jiang, ZC Liu, XG Wang, Z Zhang, XY Long
Fatigue & Fracture of Engineering Materials & Structures 39 (3), 372-383, 2016
232016
Revealing the fatigue crack initiation mechanism of a TiB2-reinforced steel matrix composite
R Chen, B Li, Y Li, Z Liu, X Long, H Yi, X Wang, C Jiang, M Huang
International Journal of Fatigue 130, 105276, 2020
222020
A thermography-based approach for structural analysis and fatigue evaluation
XG Wang, V Crupi, XL Guo, E Guglielmino
Proceedings of the Institution of Mechanical Engineers, Part C: Journal of …, 2012
202012
Temperature dependence of Lüders strain and its correlation with martensitic transformation in a medium Mn transformation-induced plasticity steel
XG Wang, MX Huang
Journal of Iron and Steel Research, International 24 (11), 1073-1077, 2017
192017
A dedicated DIC methodology for characterizing plastic deformation in single crystals
XG Wang, JF Witz, A El Bartali, A Oudriss, R Seghir, P Dufrenoy, ...
Experimental Mechanics 56, 1155-1167, 2016
192016
Le système ne peut pas réaliser cette opération maintenant. Veuillez réessayer plus tard.
Articles 1–20