In recent years, the application field of laser powder bed fusion of metals and polymers extends through an increasing variability of powder compositions in the market. New powder formulations such as nanoparticle (NP) additivated powder feedstocks are available today. Interestingly, they behave differently along with the entire laser powder bed fusion (PBF-LB) process chain, from flowability over absorbance and microstructure formation to processability and final part properties. Recent studies show that supporting NPs on metal and polymer powder feedstocks enhances processability, avoids crack formation, refines grain size, increases functionality, and improves as-built part properties. Although several inter-laboratory studies (ILSs) on ...
Laser powder bed fusion (L-PBF) Additive Manufacturing (AM) has exponentially grown in the last deca...
In the past decade, the sales of metal additive manufacturing systems have increased intensely. In p...
Substantial efforts have been placed on characterizing and modeling additive manufacturing processe...
The modification of metal alloy powders by coating with nanoparticles offers the possibility to impr...
Laser Powder Bed Fusion (L-PBF) is a well-known Additive Manufacturing (AM) technology with a wide r...
Research on Laser Powder Bed Fusion (L-PBF) of polymer powder feedstocks has raised over the last de...
In recent years, the industry has started to use parts printed by powder-based laser additive manufa...
Metal additive manufacturing is changing the way in which engineers and designers model the product...
Research and development in the field of metal-based additive manufacturing are advancing steadily e...
Research and development in the field of metal-based additive manufacturing are advancing steadily e...
The use of commodity polymers such as polypropylene (PP) is key to open new market segments and appl...
Additive manufacturing (AM) is a growing process interesting many companies in many industries. Ther...
The use of commodity polymers such as polypropylene (PP) is key to open new market segments and appl...
Metal powders for the laser powder bed fusion process are usually produced via gas atomization. Howe...
Laser powder bed fusion (L-PBF) Additive Manufacturing (AM) has exponentially grown in the last deca...
In the past decade, the sales of metal additive manufacturing systems have increased intensely. In p...
Substantial efforts have been placed on characterizing and modeling additive manufacturing processe...
The modification of metal alloy powders by coating with nanoparticles offers the possibility to impr...
Laser Powder Bed Fusion (L-PBF) is a well-known Additive Manufacturing (AM) technology with a wide r...
Research on Laser Powder Bed Fusion (L-PBF) of polymer powder feedstocks has raised over the last de...
In recent years, the industry has started to use parts printed by powder-based laser additive manufa...
Metal additive manufacturing is changing the way in which engineers and designers model the product...
Research and development in the field of metal-based additive manufacturing are advancing steadily e...
Research and development in the field of metal-based additive manufacturing are advancing steadily e...
The use of commodity polymers such as polypropylene (PP) is key to open new market segments and appl...
Additive manufacturing (AM) is a growing process interesting many companies in many industries. Ther...
The use of commodity polymers such as polypropylene (PP) is key to open new market segments and appl...
Metal powders for the laser powder bed fusion process are usually produced via gas atomization. Howe...
Laser powder bed fusion (L-PBF) Additive Manufacturing (AM) has exponentially grown in the last deca...
In the past decade, the sales of metal additive manufacturing systems have increased intensely. In p...
Substantial efforts have been placed on characterizing and modeling additive manufacturing processe...