Seguir
Zixu Guo
Zixu Guo
Dirección de correo verificada de nus.edu.sg
Título
Citado por
Citado por
Año
Physics-based modeling of γ/γ′ microstructure evolution and creep constitutive relation for single crystal superalloy
Z Guo, D Huang, X Yan
International Journal of Plasticity 137, 102916, 2021
472021
Experimental and analytical investigation on service life of film cooling structure for single crystal turbine blade
Z Guo, Z Song, J Fan, X Yan, D Huang
International Journal of Fatigue 150, 106318, 2021
392021
A damage coupled elastic-plastic constitutive model and its application on low cycle fatigue life prediction of turbine blade
Z Guo, D Huang, X Yan, X Zhang, M Qi, J Fan
International Journal of Fatigue 131, 105298, 2020
362020
A combined low‐and high‐cycle life prediction model considering the closure effect of micro‐defects
X Ding, X Yan, Z Guo, K Guo
Fatigue & Fracture of Engineering Materials & Structures 45 (7), 2058-2071, 2022
152022
Understanding the strain localization in additively manufactured materials: Micro-scale tensile tests and crystal plasticity modeling
D Hu, Z Guo, N Grilli, A Tay, Z Lu, W Yan
International Journal of Plasticity 177, 103981, 2024
142024
Slip band evolution behavior near circular hole on single crystal superalloy: experiment and simulation
Z Guo, Z Song, X Ding, K Guo, H Liu, H Yan, D Huang, X Yan
International Journal of Plasticity 165, 103600, 2023
132023
A dislocation-based damage-coupled constitutive model for single crystal superalloy: Unveiling the effect of secondary orientation on creep life of circular hole
Z Guo, Z Song, H Liu, D Hu, D Huang, X Yan, W Yan
International Journal of Plasticity 173, 103874, 2024
102024
Matrix channel width evolution of single crystal superalloy under creep and thermal mechanical fatigue: experimental and modeling investigations
Z Guo, Z Song, D Huang, X Yan
Metals and Materials International 28 (12), 2972-2986, 2022
72022
A high-temperature digital image correlation method and its application on strain measurement of film cooling holes
Z Guo, Z Song, D Huang, X Yan
Journal of Multiscale Modelling 12 (02), 2150003, 2021
42021
Morphology evolution and probability characteristic of γ'phase in single crystal superalloy during creep rafting
ZX Guo, XY Qin, DW Huang, XJ Yan
Key Engineering Materials 827, 373-378, 2020
42020
Experimental investigations on combined high and low cycle fatigue: Material-level specimen design and strain response characteristics
D Xin, D Huang, GUO Zixu, YAN Han, YAN Xiaojun, W Yinzhuoran, ...
Chinese Journal of Aeronautics 38 (1), 103246, 2025
12025
Fracture failure analysis of DZ125 directionally solidified superalloy under combined high and low cycle fatigue
X Ding, D Huang, Z Guo, X Zhang, C Shen, X Luan, Z Wangyin
Engineering Fracture Mechanics 310, 110459, 2024
12024
Evaporation‐Induced Composition Evolution in Metal Additive Manufacturing
L Wang, Z Guo, G Peng, S Wu, Y Zhang, W Yan
Advanced Functional Materials, 2412071, 2024
12024
Damage Proportion Analysis of the Combined High and Low Cycle Fatigue Based on the Continuum Damage Mechanics
X Ding, D Huang, Z Guo, C Shen, P Wang, M Zhu, X Luan
Fatigue & Fracture of Engineering Materials & Structures 48 (1), 324-343, 2025
2025
A rapid multidisciplinary life optimization method for turbine blades with a large number of film cooling holes
Z Guo, Z Song, X Qin, J Wu, Y He, D Huang, X Yan
Applied Thermal Engineering 245, 122824, 2024
2024
Markov chain‐assisted stochastic model of crack growth rate
K Guo, H Liu, H Yan, Z Song, Z Guo, D Huang, X Yan
ZAMM‐Journal of Applied Mathematics and Mechanics/Zeitschrift für Angewandte …, 2024
2024
A combined low and high cycle fatigue life prediction model considering the crack closure effect of micro-defects based on the continuous damage mechanics
X Ding, X Yan, D Huang, Z Guo, K Guo
Authorea Preprints, 2021
2021
Matrix Channel Width Evolution of Single Crystal Superalloy under Creep and Thermal Mechanical Fatigue
Z Guo, Z Song, D Huang, X Yan
El sistema no puede realizar la operación en estos momentos. Inténtalo de nuevo más tarde.
Artículos 1–18