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Xiaolong Li
Xiaolong Li
Doctor at ETH & Empa , Switzerland. Master at RWTH Aachen, Germany
在 rwth-aachen.de 的电子邮件经过验证
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引用次数
引用次数
年份
Extension of the modified Bai‐Wierzbicki model for predicting ductile fracture under complex loading conditions
B Wu, X Li, Y Di, V Brinnel, J Lian, S Münstermann
Fatigue & Fracture of Engineering Materials & Structures 40 (12), 2152-2168, 2017
562017
Micro-damage initiation in ferrite-martensite DP microstructures: A statistical characterization of crystallographic and chemical parameters
F Archie, X Li, S Zaefferer
Materials Science and Engineering: A 701, 302-313, 2017
552017
Effects of temperature and strain rate on tensile properties and dynamic strain aging behaviour of LPBF Hastelloy X
X Li, R Esmaeilizadeh, H Jahed, E Toysarkani, MS Pham, SR Holdsworth, ...
Additive Manufacturing Letters 4, 100105, 2023
182023
In-situ and ex-situ microstructure studies and dislocation-based modelling for primary creep regeneration response of 316H stainless steel
X Li, SR Holdsworth, S Kalácska, L Balogh, JS Park, YAR Dasilva, ...
Acta Materialia 216, 117130, 2021
122021
Creep behaviour of AISI 316H stainless steel under stress-varying creep loading conditions: primary creep regeneration
X Li, SR Holdsworth, E Mazza, E Hosseini
Materials at High Temperatures 36 (3), 240-252, 2019
122019
Primary creep regeneration in 10% Cr martensitic steel: In-situ and ex-situ microstructure studies
X Li, SR Holdsworth, S Kalácska, L Balogh, JS Park, AS Sologubenko, ...
Materials & Design 199, 109405, 2021
112021
Effect of prior deformation on the subsequent creep and anelastic recovery behaviour of an advanced martensitic steel
E Hosseini, V Kalyanasundaram, X Li, SR Holdsworth
Materials Science and Engineering: A 717, 68-77, 2018
112018
Comparison of primary creep regeneration and anelastic recovery behaviour of 316H austenitic and 10% Cr martensitic steels
X Li, SR Holdsworth, E Mazza, E Hosseini
Mechanics of Materials 148, 103474, 2020
92020
The investigation of primary creep regeneration for 10% Cr martensitic steel: Unified constitutive modelling
X Li, SR Holdsworth, E Mazza, E Hosseini
International Journal of Mechanical Sciences 190, 106044, 2021
82021
Creep behaviour of a high chromium martensitic steel under stress varying creep loading conditions: primary creep regeneration (PCR)
X Li, SR Holdsworth, E Mazza, E Hosseini
International Journal of Pressure Vessels and Piping 187, 104188, 2020
72020
Damage initiation in dual-phase steels: Influence of crystallographic and morphological parameters
F Archie, XL Li, S Zaefferer
Materials Science Forum 879, 157-163, 2017
62017
Microstructurally-Based Modelling of Primary Creep Regeneration
X Li
ETH Zurich, 2021
52021
Investigating the deformation and microstructural evolution of laser powder-bed fusion of Hastelloy X during high temperature fatigue loading
R Esmaeilizadeh, X Li, M Kuhlow, S Holdsworth, A Keshavarzkermani, ...
Additive Manufacturing Letters 9, 100201, 2024
22024
Microstructure and mechanical response of as-built and solution-annealed LPBF Hastelloy X under high-temperature fatigue loading
X Li, R Esmaeilizadeh, E Hosseini
Additive Manufacturing Letters 10, 100227, 2024
2024
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