Follow
Tianyu Zhang
Tianyu Zhang
Verified email at njtech.edu.cn
Title
Cited by
Cited by
Year
Evaluation of the effect of various prior creep-fatigue interaction damages on subsequent tensile and creep properties of 9% Cr steel
W Zhang, X Wang, H Chen, T Zhang, J Gong
International Journal of Fatigue 125, 440-453, 2019
442019
Quantitative description between pre-fatigue damage and residual tensile properties of P92 steel
X Wang, W Zhang, J Ni, T Zhang, J Gong, MA Wahab
Materials Science and Engineering: A 744, 415-425, 2019
432019
P92 steel creep-fatigue interaction responses under hybrid stress-strain controlled loading and a life prediction model
T Zhang, X Wang, Y Ji, W Zhang, T Hassan, J Gong
International Journal of Fatigue 140, 105837, 2020
332020
An improved unified viscoplastic model for modelling low cycle fatigue and creep fatigue interaction loadings of 9–12% Cr steel
X Wang, T Zhang, W Zhang, MA Wahab, J Gong
European Journal of Mechanics-A/Solids 85, 104123, 2021
272021
A new empirical life prediction model for 9–12% Cr steels under low cycle fatigue and creep fatigue interaction loadings
X Wang, W Zhang, T Zhang, J Gong, M Abdel Wahab
Metals 9 (2), 183, 2019
262019
Remaining creep properties and fracture behaviour of P92 steel welded joint under prior low cycle fatigue loading
W Zhang, T Zhang, X Wang, H Chen, J Gong
Journal of Materials Research and Technology 9 (4), 7887-7899, 2020
232020
Microstructural damage mechanics-based model for creep fracture of 9% Cr steel under prior fatigue loading
W Zhang, X Wang, H Chen, T Zhang, J Gong
Theoretical and Applied Fracture Mechanics 103, 102269, 2019
192019
A universal constitutive model for hybrid stress-strain controlled creep-fatigue deformation
T Zhang, X Wang, D Zhou, R Wang, Y Jiang, X Zhang, J Gong, S Tu
International Journal of Mechanical Sciences 225, 107369, 2022
172022
Cyclic deformation and damage mechanisms of 9% Cr steel under hybrid stress-strain controlled creep fatigue interaction loadings
T Zhang, X Wang, Y Ji, J Tang, Y Jiang, X Zhang, J Gong
International Journal of Fatigue 151, 106357, 2021
162021
An extended crystal plasticity model to simulate the deformation behaviors of hybrid stress–strain controlled creep-fatigue interaction loading
D Zhou, X Wang, R Wang, T Zhang, X Yang, Y Jiang, X Zhang, J Gong, ...
International Journal of Fatigue 156, 106680, 2022
132022
The correlation between prior fatigue damage and remaining creep properties in a high chromium steel welded joint
W Zhang, T Zhang, X Wang, Y Ji, J Gong
Materials Science and Engineering: A 790, 139717, 2020
132020
A modified constitutive model for tensile deformation of 9% Cr steel under prior fatigue loading
W Zhang, X Wang, H Chen, T Zhang, J Gong
Mechanics of Materials 136, 103093, 2019
122019
A generalized physical-based failure indicator parameter used in crystal plasticity model to predict fatigue life under low cycle fatigue and creep-fatigue loadings
D Zhou, X Wang, X Yang, T Zhang, Y Jiang, X Zhang, J Gong, S Tu
International Journal of Fatigue 166, 107290, 2023
102023
Characterization of the cyclic softening and remaining creep behaviour of P92 steel weldment
W Zhang, X Wang, Z Kang, T Zhang, Y Jiang, X Zhang, J Gong
Journal of Materials Research and Technology 15, 1446-1456, 2021
92021
Fatigue–creep interaction of P92 steel and modified constitutive modelling for simulation of the responses
T Zhang, X Wang, W Zhang, T Hassan, J Gong
Metals 10 (3), 307, 2020
82020
Insight into the creep-fatigue interaction and remaining creep damage mechanisms in different micro-regions of 9% Cr steel welded joints
W Zhang, X Wang, Z Kang, T Zhang, Y Jiang, X Zhang, J Gong, S Tu
Materials Characterization 185, 111777, 2022
72022
Damage behaviour in different micro-regions of P92 steel weldment under sequential low cycle fatigue and creep loading
W Zhang, X Wang, Z Kang, T Zhang, Y Jiang, X Zhang, J Gong
Engineering Fracture Mechanics 254, 107935, 2021
62021
Weldability and damage evaluations of fresh-to-aged reformer furnace tubes
C Fuyang, Y Zhou, B Shao, T Zhang, X Guo, J Gong, X Wang
Metals 11 (6), 900, 2021
42021
A robust life prediction model for a range of materials under creep-fatigue interaction loading conditions
T Zhang, X Wang, X Xia, Y Jiang, X Zhang, L Zhao, A Roy, J Gong, S Tu
International Journal of Fatigue 176, 107904, 2023
32023
Assessment of prior fatigue damage and a new approach to predict remanent creep rupture of P92 steel
C Zhang, T Zhang, X Wang, J Wen, Y Jiang, J Gong, S Tu
International Journal of Pressure Vessels and Piping 201, 104873, 2023
22023
The system can't perform the operation now. Try again later.
Articles 1–20