Follow
Xiaoxiao Wang
Xiaoxiao Wang
University of Srathclyde
Verified email at strath.ac.uk
Title
Cited by
Cited by
Year
A unified direct method for ratchet and fatigue analysis of structures subjected to arbitrary cyclic thermal-mechanical load histories
Z Ma, X Wang, H Chen, FZ Xuan, Y Liu
International Journal of Mechanical Sciences 194, 106190, 2021
182021
Physics-based probabilistic assessment of creep-fatigue failure for pressurized components
X Wang, J Yang, H Chen, F Xuan
International Journal of Mechanical Sciences 250, 108314, 2023
102023
Creep rupture limit analysis for engineering structures under high-temperature conditions
X Wang, Z Ma, H Chen, Y Liu, D Shi, J Yang
International Journal of Pressure Vessels and Piping 199, 104763, 2022
92022
Physics-based neural network for probabilistic low cycle fatigue and ratcheting assessments of pressurized elbow pipe component
X Wang, H Chen, F Xuan
International Journal of Fatigue 172, 107598, 2023
62023
Numerical simulation and experimental investigation of residual stress in 06Cr19Ni10 austenitic stainless steel weld joint with effects of strain-strengthening
LQ Tang, HF Li, XX Wang, CF Qian
Applied mechanics and materials 853, 204-208, 2017
52017
Neural network-assisted probabilistic creep-fatigue assessment of hydrogenation reactor with physics-based surrogate model
X Wang, H Chen, F Xuan
International Journal of Pressure Vessels and Piping 206, 105051, 2023
42023
Direct method-based probabilistic shakedown analysis for the structure under multiple uncertain design conditions
X Wang, H Chen, F Xuan
Ocean Engineering 280, 114653, 2023
42023
Effect of constraint on cyclic plastic behaviours of cracked bodies and the establishment of unified constraint correlation
X Wang, J Yang, H Chen, Z Ma, F Xuan
European Journal of Mechanics-A/Solids 97, 104857, 2023
42023
Effect of residual stress introduced by local loading on fracture behaviour of DMWJ under different constraints
S Gu, J Wu, X Wang, W Cui, J Yang, H Chen
International Journal of Pressure Vessels and Piping 202, 104885, 2023
22023
Direct Method-Based Probabilistic Structural Integrity Assessment for High-Temperature Components Considering Uncertain Load Conditions
X Wang, Z Ma, H Chen, W Luan
Pressure Vessels and Piping Conference 86144, V001T01A053, 2022
22022
Extended constant life diagrams for low cycle fatigue and creep-fatigue assessments of high-temperature structures
Z Ma, Z Fu, H Chen, X Wang, D Barbera
Engineering Structures 308, 118005, 2024
2024
Shakedown and creep rupture analysis of printed circuit heat exchangers based on the linear matching method framework
Z Ma, Z Fu, H Chen, X Wang
Finite Elements in Analysis and Design 233, 104127, 2024
2024
Application of physics-informed machine learning methods in buckling design of axially compressed cylindrical shells
F Liu, H Chen, J Yang, X Wang
Thin-Walled Structures, 111963, 2024
2024
残余应力与拘束对 GH4169 合金疲劳及蠕变-疲劳裂纹扩展速率影响研究
雷雪雪, 刘芳, 崔元元, 王骁晓, 杨杰, 陈浩峰
上海理工大学学报 46 (1), 60-68, 2024
2024
Low cycle fatigue and creep-fatigue interaction behavior of 2.25 CrMoV steel at high temperature
F Chen, W Zhang, K Zhang, Q Yang, X Wang, C Zhou
Journal of Materials Research and Technology 28, 3155-3165, 2024
2024
An Introduction to the Probabilistic Linear Matching Method Framework for Structural Integrity Assessment Under Uncertain Design Conditions
X Wang, H Chen
Direct Methods for Limit State of Materials and Structures: Advanced …, 2023
2023
基于 GTN 损伤模型的均质平板非共线平行双裂纹合并方式研究
刘红侠, 杨杰, 刘芳, 沈鋆, 王骁晓, 陈浩峰
压力容器 40 (6), 50-62, 2023
2023
Probabilistic structural integrity assessment based on direct methods
X Wang
2023
Creep fatigue life assessment of hydrogenation reactor manufactured of 2.25 Cr-1Mo steel using the linear matching method framework
Z Ma, X Wang, H Chen, F Xuan
ESIA15 & ISSI-2019 Joint Conference on Engineering Structural Integrity …, 2019
2019
Study on coalescence modes of non-collinear parallel double cracks in homogeneous plate based on GTN damage model
刘红侠, 杨杰, 刘芳, 沈鋆, 王骁晓, 陈浩峰
Pressure Vessel Technology 40 (6), 50-62, 0
The system can't perform the operation now. Try again later.
Articles 1–20