Powder Bed Fusion (PBF) has become popular despite the fact that PBF-prepared components feature charac-teristic defects. Their performance, however, can be shifted to the next level by the application of post -processing, advantageously via intensive plastic deformation. The study characterizes the effects of rotary swaging performed at hot, cold, and cryogenic conditions on the (sub)structure and mechanical properties of workpieces of AISI 316 L stainless steel, favourably used in constructions as well as medicine, manufactured by PBF. The workpieces built in the horizontal and vertical directions were analysed to assess their structures, residual strain and stress, density, and porosity; porosity was observed primarily in the horizontall...
Understanding the influence of process parameters and defect structure on the properties of parts pr...
Additive manufacturing has the potential to reinvent the manufacturing industry by reducing energy u...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
Powder Bed Fusion (PBF) has become popular despite the fact that PBF-prepared components feature cha...
The presented work focused on the development of the microstructural and mechanical properties of a ...
The presented work focused on the development of the microstructural and mechanical properties of a ...
International audienceLaser Powder Bed Fusion (LPBF) technology provides new opportunities to enhanc...
The microstructure-properties relations and strengthening mechanisms of additively manufactured 316L...
Laser powder bed fusion (L-PBF) has attracted great interest in the aerospace and medical sectors be...
Post-processing is one of the main ways to improve mechanical and microstructural characteristics of...
The understanding of relationships between processing, microstructure and mechanical properties in l...
Post-processing is one of the main ways to improve mechanical and microstructural characteristics of...
Additive manufacturing has become an enabling technology for making extremely complicated engineered...
Of the many benefits of the additive manufacturing process, laser powder bed fusion (L-PBF) has spec...
Understanding the influence of process parameters and defect structure on the properties of parts pr...
Additive manufacturing has the potential to reinvent the manufacturing industry by reducing energy u...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...
Powder Bed Fusion (PBF) has become popular despite the fact that PBF-prepared components feature cha...
The presented work focused on the development of the microstructural and mechanical properties of a ...
The presented work focused on the development of the microstructural and mechanical properties of a ...
International audienceLaser Powder Bed Fusion (LPBF) technology provides new opportunities to enhanc...
The microstructure-properties relations and strengthening mechanisms of additively manufactured 316L...
Laser powder bed fusion (L-PBF) has attracted great interest in the aerospace and medical sectors be...
Post-processing is one of the main ways to improve mechanical and microstructural characteristics of...
The understanding of relationships between processing, microstructure and mechanical properties in l...
Post-processing is one of the main ways to improve mechanical and microstructural characteristics of...
Additive manufacturing has become an enabling technology for making extremely complicated engineered...
Of the many benefits of the additive manufacturing process, laser powder bed fusion (L-PBF) has spec...
Understanding the influence of process parameters and defect structure on the properties of parts pr...
Additive manufacturing has the potential to reinvent the manufacturing industry by reducing energy u...
17–4 PH (precipitation hardening) stainless steel is commonly used for the fabrication of complicate...