International audienceLaser-based powder bed fusion (LPBF) is attractive to build complex parts in spite of the low machinability of Inconel 625. The LPBF microstructures and tensile properties are well documented in literature. But fatigue properties and impact of the LPBF intrinsic defects and microstructures on the crack initiation and propagation mechanisms are uncommon. Low and high-cycle fatigue tests at room and service temperature presented in this paper prove that the LPBF defects shorten the crack initiation stage. After annealing heat treatment, the microstructure adapts to the defects, and the fatigue response becomes similar to a free defect material. The fatigue life of as-built Inconel 625 is lower than 50% of its monotonic y...
This study reports the variability of the fatigue strength of specimens manufactured by the laser po...
This paper addresses the effect of the post-process heat treatments on the microstructure and fatigu...
With the development of additive manufacturing (AM), the Ti-6Al-4V alloy manufactured by laser powde...
Laser powder bed fusion (L-PBF) is an emerging additive manufacturing technique for building structu...
In this study, the very high cycle fatigue (VHCF) behavior of Inconel 718 manufactured via a Laser ...
Fatigue performance is one of the important mechanical properties which is hindering some of the add...
In this paper, the effect of microstructural anisotropy on the fatigue crack growth behaviour of the...
Numerous efforts have been devoted to produce reliable additive manufactured (AM)materials for struc...
The laser powder bed fusion (L-PBF) process involves a large number of processing parameters. Extend...
Microstructural features and their evolution during cyclic deformation directly impact the low cycle...
IN718 combines excellent mechanical properties with a good weldability and is therefore an ideal all...
Crack initiation constitutes a large portion of the total life for parts under high cycle fatigue l...
The mechanical performances of additive manufactured (AM) material are highly dependent on the fabri...
The Inconel 625 (IN625) superalloy has a high strength, excellent fatigue, and creep resistance unde...
The Inconel 625 (IN625) superalloy has a high strength, excellent fatigue, and creep resistance unde...
This study reports the variability of the fatigue strength of specimens manufactured by the laser po...
This paper addresses the effect of the post-process heat treatments on the microstructure and fatigu...
With the development of additive manufacturing (AM), the Ti-6Al-4V alloy manufactured by laser powde...
Laser powder bed fusion (L-PBF) is an emerging additive manufacturing technique for building structu...
In this study, the very high cycle fatigue (VHCF) behavior of Inconel 718 manufactured via a Laser ...
Fatigue performance is one of the important mechanical properties which is hindering some of the add...
In this paper, the effect of microstructural anisotropy on the fatigue crack growth behaviour of the...
Numerous efforts have been devoted to produce reliable additive manufactured (AM)materials for struc...
The laser powder bed fusion (L-PBF) process involves a large number of processing parameters. Extend...
Microstructural features and their evolution during cyclic deformation directly impact the low cycle...
IN718 combines excellent mechanical properties with a good weldability and is therefore an ideal all...
Crack initiation constitutes a large portion of the total life for parts under high cycle fatigue l...
The mechanical performances of additive manufactured (AM) material are highly dependent on the fabri...
The Inconel 625 (IN625) superalloy has a high strength, excellent fatigue, and creep resistance unde...
The Inconel 625 (IN625) superalloy has a high strength, excellent fatigue, and creep resistance unde...
This study reports the variability of the fatigue strength of specimens manufactured by the laser po...
This paper addresses the effect of the post-process heat treatments on the microstructure and fatigu...
With the development of additive manufacturing (AM), the Ti-6Al-4V alloy manufactured by laser powde...