Damage behaviour in different micro-regions of P92 steel weldment under sequential low cycle fatigue and creep loading

Zhang , Wei and Wang , Xiaowei and Kang , Zitong and Zhang
Engineering Fracture Mechanics 254 107935

5
2021
Remaining creep properties and fracture behaviour of P92 steel welded joint under prior low cycle fatigue loading

Wei Zhang , Tianyu Zhang , Xiaowei Wang , Haofeng Chen
Journal of materials research and technology 9 ( 4) 7887 -7899

17
2020
A modified constitutive model for tensile deformation of 9%Cr steel under prior fatigue loading

Wei Zhang , Xiaowei Wang , Haofeng Chen , Tianyu Zhang
Mechanics of Materials 136 103093

2
2019
Microstructural damage mechanics-based model for creep fracture of 9%Cr steel under prior fatigue loading

Wei Zhang , Xiaowei Wang , Haofeng Chen , Tianyu Zhang
Theoretical and Applied Fracture Mechanics 103 102269

5
2019
Quantitative description between pre-fatigue damage and residual tensile properties of P92 steel

Xiaowei Wang , Wei Zhang , Junyan Ni , Tianyu Zhang
Materials Science and Engineering A-structural Materials Properties Microstructure and Processing 744 415 -425

11
2019
The correlation between prior fatigue damage and remaining creep properties in a high chromium steel welded joint

Wei Zhang , Tianyu Zhang , Xiaowei Wang , Yunnan Ji
Materials Science and Engineering: A 790 139717

10
2020
19
2019
Fatigue–Creep Interaction of P92 Steel and Modified Constitutive Modelling for Simulation of the Responses

Tianyu Zhang , Xiaowei Wang , Wei Zhang , Tasnim Hassan
Metals 10 ( 3) 307

5
2020
Evaluation of the effect of various prior creep-fatigue interaction damages on subsequent tensile and creep properties of 9%Cr steel

Wei Zhang , Xiaowei Wang , Haofeng Chen , Tianyu Zhang
International Journal of Fatigue 125 440 -453

37
2019
P92 steel creep-fatigue interaction responses under hybrid stress-strain controlled loading and a life prediction model

Tianyu Zhang , Xiaowei Wang , Yunnan Ji , Wei Zhang
International Journal of Fatigue 140 105837

22
2020
An improved unified viscoplastic model for modelling low cycle fatigue and creep fatigue interaction loadings of 9-12%Cr steel

Xiaowei Wang , Tianyu Zhang , Wei Zhang , Magd Abdel Wahab
European Journal of Mechanics A-solids 85 104123

17
2021
A universal constitutive model for hybrid stress-strain controlled creep-fatigue deformation

Tianyu Zhang , Xiaowei Wang , Dewen Zhou , Runzi Wang
International Journal of Mechanical Sciences 225 107369

4
2022
Insight into the creep-fatigue interaction and remaining creep damage mechanisms in different micro-regions of 9\% Cr steel welded joints

Wei Zhang , Xiaowei Wang , Zitong Kang , Tianyu Zhang
Materials Characterization 185 111777

2
2022
Characterization of the cyclic softening and remaining creep behaviour of P92 steel weldment

Wei Zhang , Xiaowei Wang , Zitong Kang , Tianyu Zhang
Journal of Materials Research and Technology 15 1446 -1456

8
2021
Cyclic deformation and damage mechanisms of 9\% Cr steel under hybrid stress-strain controlled creep fatigue interaction loadings

Tianyu Zhang , Xiaowei Wang , Yunnan Ji , Jianqun Tang
International Journal of Fatigue 151 106357

8
2021
An extended crystal plasticity model to simulate the deformation behaviors of hybrid stress--strain controlled creep-fatigue interaction loading

Dewen Zhou , Xiaowei Wang , Runzi Wang , Tianyu Zhang
International Journal of Fatigue 156 106680

4
2022
A robust life prediction model for a range of materials under creep-fatigue interaction loading conditions

Tianyu Zhang , Xiaowei Wang , Xianxi Xia , Yong Jiang
International Journal of Fatigue 176 107904 -107904

3
2023
Assessment of prior fatigue damage and a new approach to predict remanent creep rupture of P92 steel

Chunan Zhang , Tianyu Zhang , Xiaowei Wang , Jianfeng Wen
International Journal of Pressure Vessels and Piping 201 104873 -104873

2
2023
An insight into the creep-fatigue damage localization in welded joints based on crystal plasticity finite element method

Dewen Zhou , Xiaowei Wang , Chunan Zhang , Tianyu Zhang
International Journal of Fatigue 175 107802 -107802

1
2023