Consistent manufacturing of volumetrically dense engineering components, free of solidification cracks by laser powder bed fusion (LPBF), has been demonstrated for Al-Si alloys such as AlSi10Mg and Al12Si. The success in LPBF of these alloys is attributed to the near eutectic composition with a small freezing range. To illuminate this observation, cracking susceptibility was examined from Scheil-Gulliver solidification modeling by calculating the hot cracking susceptibility, |dT/dfS1/2|. To validate the findings from hot cracking susceptibility calculations, six binary Al-Si alloys, whose compositions were strategically chosen at hypo-, near-, and hyper-eutectic compositions, were gas atomized into alloy powders, and processed by LPBF. Only...
AlSi10Mg is the most widely studied Al alloy used to produce components by laser-basedpowder bed fus...
Aluminium alloys from the 2xxx series represent important structural materials due to their optimal ...
Laser powder bed fusion (LPBF) additive manufacturing of 2XXX series Al alloys could be used for low...
Consistent manufacturing of volumetrically dense engineering components, free of solidification crac...
Laser powder bed fusion (LPBF) has demonstrated its unique ability to produce customized, complex en...
Metal Additive Manufacturing also referred to as 3D printing has flourished rapidly into sectors suc...
Dans cette thèse, une analyse de la sensibilité à la fissuration à chaud en fonction (i) des paramèt...
Fabrication of high strength aluminum alloys using laser-based powder bed fusion (L-PBF) encounters ...
Most wrought aluminium alloys of the 2000 series are difficult to manufacture by laser powder bed fu...
Laser Powder Bed Fusion (LPBF) is an additive manufacturing technique with growing relevance in indu...
Laser powder bed fusion (LPBF) is a powder bed additive manufacturing technology that allows the pr...
Using the calculation of phase diagrams approach and Scheil solidification modeling, the Al-2.5Mg-1....
We examine the microstructural characteristics of LPBF AlSi10Mg produced by using a wide range of LP...
Required microstructural attributes of an alloy vary with structural applications. The microstructur...
The high strength of Al-Si hypoeutectic alloys additively manufactured by powder-bed fusion is of gr...
AlSi10Mg is the most widely studied Al alloy used to produce components by laser-basedpowder bed fus...
Aluminium alloys from the 2xxx series represent important structural materials due to their optimal ...
Laser powder bed fusion (LPBF) additive manufacturing of 2XXX series Al alloys could be used for low...
Consistent manufacturing of volumetrically dense engineering components, free of solidification crac...
Laser powder bed fusion (LPBF) has demonstrated its unique ability to produce customized, complex en...
Metal Additive Manufacturing also referred to as 3D printing has flourished rapidly into sectors suc...
Dans cette thèse, une analyse de la sensibilité à la fissuration à chaud en fonction (i) des paramèt...
Fabrication of high strength aluminum alloys using laser-based powder bed fusion (L-PBF) encounters ...
Most wrought aluminium alloys of the 2000 series are difficult to manufacture by laser powder bed fu...
Laser Powder Bed Fusion (LPBF) is an additive manufacturing technique with growing relevance in indu...
Laser powder bed fusion (LPBF) is a powder bed additive manufacturing technology that allows the pr...
Using the calculation of phase diagrams approach and Scheil solidification modeling, the Al-2.5Mg-1....
We examine the microstructural characteristics of LPBF AlSi10Mg produced by using a wide range of LP...
Required microstructural attributes of an alloy vary with structural applications. The microstructur...
The high strength of Al-Si hypoeutectic alloys additively manufactured by powder-bed fusion is of gr...
AlSi10Mg is the most widely studied Al alloy used to produce components by laser-basedpowder bed fus...
Aluminium alloys from the 2xxx series represent important structural materials due to their optimal ...
Laser powder bed fusion (LPBF) additive manufacturing of 2XXX series Al alloys could be used for low...