Adjusting microstructure and improving mechanical property of additive manufacturing 316L based on process optimization
K Xu, B Li, C Jiang - Materials Science and Engineering: A, 2023 - Elsevier
In additive manufacturing (AM), printing defects or columnar-coarse grains due to an
inappropriate process parameter often damage the mechanical properties of AM metals …
inappropriate process parameter often damage the mechanical properties of AM metals …
Fatigue strength of PBF‐LB/M and wrought 316L stainless steel: effect of post‐treatment and cyclic mean stress
M Braun, E Mayer, I Kryukov, C Wolf… - Fatigue & fracture of …, 2021 - Wiley Online Library
Additive manufacturing (AM) enables the cost‐effective production of complex components,
many of which are traditionally manufactured using costly subtractive processes. During …
many of which are traditionally manufactured using costly subtractive processes. During …
Strength properties of a porous titanium alloy Ti6Al4V with diamond structure obtained by laser power bed fusion (LPBF)
A Falkowska, A Seweryn, M Skrodzki - Materials, 2020 - mdpi.com
This paper presents the results of experimental research on the strength properties of
porous structures with different degrees of density manufactured of Ti6Al4V titanium alloy by …
porous structures with different degrees of density manufactured of Ti6Al4V titanium alloy by …
Image-based numerical modeling of the tensile deformation behavior and mechanical properties of additive manufactured Ti–6Al–4V diamond lattice structures
This work concerns the numerical modeling of the deformation process and mechanical
properties of structures obtained by the additive method laser power bed fusion (LPBF). The …
properties of structures obtained by the additive method laser power bed fusion (LPBF). The …
Physics-informed machine learning for low-cycle fatigue life prediction of 316 stainless steels
Degraded fatigue performance has been frequently reported for metallic materials at
elevated temperatures, which is further deteriorated by reducing the loading frequency due …
elevated temperatures, which is further deteriorated by reducing the loading frequency due …
In situ observation for the fatigue crack growth mechanism of 316L stainless steel fabricated by laser engineered net sha**
K Xu, B Li, S Li, M Luo, X Gao, C Jiang… - International Journal of …, 2020 - Elsevier
For the first time, the fatigue crack growth resistance of 316L stainless steel, fabricated by
laser engineered net sha** (LENS) process, was investigated through in-situ SEM. The …
laser engineered net sha** (LENS) process, was investigated through in-situ SEM. The …
Further development of the fission gas swelling model for U-10Mo fuels
X Jian, F Yan, X Kong, Y Li, S Ding - Journal of Nuclear Materials, 2022 - Elsevier
The irradiation swelling of U-10Mo fuels is one of the critical factors to affect the in-pile
structural integrity and dimensional stability of fuel plates. In this study, a mechanistic model …
structural integrity and dimensional stability of fuel plates. In this study, a mechanistic model …
Cyclic behaviour modelling of additively manufactured Ti-6Al-4V lattice structures
M Doroszko, A Seweryn - International Journal of Mechanical Sciences, 2024 - Elsevier
The present work is concerned with the numerical modelling of the cyclic behaviour of Ti-6Al-
4V lattice structures. In the study, diamond structures of titanium alloy produced by the …
4V lattice structures. In the study, diamond structures of titanium alloy produced by the …
Preparation and characterization of permeability and mechanical properties of three-dimensional porous stainless steel
C Li, Z Zhou - RSC advances, 2022 - pubs.rsc.org
Porous materials are indispensable in biomedical and chemical catalysis fields, but it is still
a challenging task to fabricate them with excellent permeability and mechanical properties at …
a challenging task to fabricate them with excellent permeability and mechanical properties at …
Evolution of aluminum particle-involved phase transformation and pore structure in an elemental Fe–Mn–Al–C powder compact during vacuum sintering
Z Xu, J Du, C Zhuang, S Huang, C Wang - Vacuum, 2020 - Elsevier
In this work, a quaternary elemental Fe–Mn–Al–C powder compact was sintered at various
temperatures (≤ 700° C) in vacuum, in order to clarify Al particle-involved pore evolution …
temperatures (≤ 700° C) in vacuum, in order to clarify Al particle-involved pore evolution …