The experimental analysis of spatter formation was carried out on an instrumented SLM set-up allowing the quantification of spatter ejections and possible correlation with melt-pool behavior. Considering nearly similar SLM conditions than those carried out on SLM machines, an increase of large spatters (>80 μm) with volume energy density (VED) was clearly demonstrated on a 316L stainless steel, which was attributed to the recoil pressure applied on the melt-pool by the metal vaporization and the resulting high velocity vapor plume. In a second step, much lower spattering was shown on Al-12Si powder beds than on 316L ones. Fast camera analysis of powder beds indicated that droplet formation was mostly initiated in the powder-bed near the mel...
The creation of an object by selective laser melting (SLM) occurs by melting contiguous areas of a p...
The laser–matter interaction and solidification phenomena associated with laser additive manufacturi...
Spatter is an inherent, unpreventable, and undesired phenomenon in laser powder bed fusion (L-PBF) a...
The experimental analysis of spatter formation was carried out on an instrumented SLM set-up allowin...
The laser powder bed fusion (LPBF) or powder-bed additive layer manufacturing process is now recogni...
Laser-powder interaction and meltpool dynamics govern the physics behind the selective laser melting...
Laser-powder interaction and meltpool dynamics govern the physics behind the selective laser melting...
Laser-powder interaction and meltpool dynamics govern the physics behind the selective laser melting...
The additive manufacturing (AM) of metals is becoming an increasingly important production process w...
In commercial Selective Laser Melting (SLM) machines, the removal of spatter particles and other und...
Spattering has been a problem in metal processing involving high-power lasers, like laser welding, m...
Laser-powder interaction and meltpool dynamics govern the physics behind the selective laser melting...
The creation of an object by selective laser melting (SLM) occurs by melting contiguous areas of a p...
The creation of an object by selective laser melting (SLM) occurs by melting contiguous areas of a p...
Le procédé de fusion sélective « lit de poudre » (SLM) permet d'élaborer des pièces métalliques bonn...
The creation of an object by selective laser melting (SLM) occurs by melting contiguous areas of a p...
The laser–matter interaction and solidification phenomena associated with laser additive manufacturi...
Spatter is an inherent, unpreventable, and undesired phenomenon in laser powder bed fusion (L-PBF) a...
The experimental analysis of spatter formation was carried out on an instrumented SLM set-up allowin...
The laser powder bed fusion (LPBF) or powder-bed additive layer manufacturing process is now recogni...
Laser-powder interaction and meltpool dynamics govern the physics behind the selective laser melting...
Laser-powder interaction and meltpool dynamics govern the physics behind the selective laser melting...
Laser-powder interaction and meltpool dynamics govern the physics behind the selective laser melting...
The additive manufacturing (AM) of metals is becoming an increasingly important production process w...
In commercial Selective Laser Melting (SLM) machines, the removal of spatter particles and other und...
Spattering has been a problem in metal processing involving high-power lasers, like laser welding, m...
Laser-powder interaction and meltpool dynamics govern the physics behind the selective laser melting...
The creation of an object by selective laser melting (SLM) occurs by melting contiguous areas of a p...
The creation of an object by selective laser melting (SLM) occurs by melting contiguous areas of a p...
Le procédé de fusion sélective « lit de poudre » (SLM) permet d'élaborer des pièces métalliques bonn...
The creation of an object by selective laser melting (SLM) occurs by melting contiguous areas of a p...
The laser–matter interaction and solidification phenomena associated with laser additive manufacturi...
Spatter is an inherent, unpreventable, and undesired phenomenon in laser powder bed fusion (L-PBF) a...