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Jian-Feng Wen
Jian-Feng Wen
Department of Materials Science and Engineering, Texas A&M Univesity
Verified email at tamu.edu - Homepage
Title
Cited by
Cited by
Year
A multiaxial creep-damage model for creep crack growth considering cavity growth and microcrack interaction
JF Wen, ST Tu
Engineering fracture mechanics 123, 197-210, 2014
1422014
Simulations of creep crack growth in 316 stainless steel using a novel creep-damage model
JF Wen, ST Tu, XL Gao, JN Reddy
Engineering fracture mechanics 98, 169-184, 2013
1192013
Effects of stress level and stress state on creep ductility: evaluation of different models
JF Wen, ST Tu, FZ Xuan, XW Zhang, XL Gao
Journal of materials science & technology 32 (8), 695-704, 2016
902016
Multi-axial creep-fatigue life prediction considering history-dependent damage evolution: A new numerical procedure and experimental validation
RZ Wang, SJ Guo, H Chen, JF Wen, XC Zhang, ST Tu
Journal of the Mechanics and Physics of Solids 131, 313-336, 2019
592019
A study on the thermal cyclic behavior of thermal barrier coatings with different MCrAlY roughness
K Yuan, Y Yu, JF Wen
Vacuum 137, 72-80, 2017
402017
New model for creep damage analysis and its application to creep crack growth simulations
JF Wen, ST Tu, XL Gao, JN Reddy
Materials Science and Technology 30 (1), 32-37, 2014
362014
Environmentally enhanced creep crack growth by grain boundary cavitation under cyclic loading
JF Wen, Y Liu, A Srivastava, AA Benzerga, ST Tu, A Needleman
Acta Materialia 153, 136-146, 2018
342018
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 (9), 2079-2092, 2019
332019
Creep crack growth by grain boundary cavitation under monotonic and cyclic loading
JF Wen, A Srivastava, A Benzerga, ST Tu, A Needleman
Journal of the Mechanics and Physics of Solids 108, 68-84, 2017
322017
Creep fracture mechanics parameters for internal axial surface cracks in pressurized cylinders and creep crack growth analysis
JF Wen, ST Tu, JM Gong, W Sun
International Journal of Pressure Vessels and Piping 88 (11), 452-464, 2011
312011
Rapid fabrication of physically robust hydrogels
B Bao, Q Zeng, K Li, J Wen, Y Zhang, Y Zheng, R Zhou, C Shi, T Chen, ...
Nature Materials 22 (10), 1253-1260, 2023
292023
Simulation of creep and damage in the bonded compliant seal of planar solid oxide fuel cell
YC Zhang, W Jiang, ST Tu, JF Wen
International journal of hydrogen energy 39 (31), 17941-17951, 2014
202014
Using short-time creep relaxation effect to decrease the residual stress in the bonded compliant seal of planar solid oxide fuel cell–A finite element simulation
YC Zhang, W Jiang, ST Tu, JF Wen, W Woo
Journal of Power Sources 255, 108-115, 2014
182014
Elastic strain energy control of the precipitate free zone around primary carbides in nickel base alloy 725
M Song, JF Wen, Z Jiao, GS Was
Acta Materialia 120, 138-149, 2016
162016
Autofrettage and shakedown analyses of an internally pressurized thick-walled cylinder based on strain gradient plasticity solutions
XL Gao, JF Wen, FZ Xuan, ST Tu
Journal of Applied Mechanics 82 (4), 041010, 2015
162015
Autofrettage and shakedown analyses of an internally pressurized thick-walled spherical shell based on two strain gradient plasticity solutions
JF Wen, XL Gao, FZ Xuan, ST Tu
Acta Mechanica 228, 89-105, 2017
152017
Ductile tearing analyses of cracked TP304 pipes using the multiaxial fracture strain energy model and the Gurson–Tvergaard–Needleman model
T Wang, JF Wen, YJ Kim, ST Tu
Fatigue & Fracture of Engineering Materials & Structures 43 (10), 2402-2415, 2020
112020
A combination rule for multiple surface cracks based on fatigue crack growth life
JF Wen, Y Zhan, ST Tu, FZ Xuan
AIMS Materials Science 3 (4), 1649-1664, 2016
112016
Ductile failure of flat plates containing two through-wall cracks: Experimental investigation and numerical modeling
XW Zhang, JF Wen, T Wang, XC Zhang, ST Tu
International Journal of Pressure Vessels and Piping 191, 104377, 2021
102021
A study of ultra-low cycle fatigue failure based on a fracture strain energy model
T Wang, JF Wen, PP Liao, XC Zhang, YJ Kim, ST Tu
International Journal of Fatigue 146, 106149, 2021
102021
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