The production of metallic parts by additive manufacturing (AM) is of significant interest to industry, but in the absence of standards, practical design considerations for manufacturing engineers are not widely known. Within the context of powder bed fusion (PBF), many unknowns persist regarding variations in part quality due to part location on the build plate, process consistency, feedstock supplier, and machine manufacturer. In this paper, we investigate the mechanical property variance across the build platform and document the successful use of feedstock powders obtained from several suppliers for the manufacture of Inconel 718 tensile and Charpy specimens, built on an EOS M280 laser-based powder bed fusion system. Particular ...
Additive manufacturing (AM) technology has been utilized as promising material process because of en...
Despite the accelerated growth of laser-powder bed fusion in recent years, there are still major obs...
Metal Additive Manufacturing (AM) promises an era of highly flexible part production, replete with u...
The production of metallic parts by additive manufacturing (AM) is of significant interest to indus...
Additive manufacturing (AM), or layer-by-layer part fabrication, is enabling the materialization of ...
Additive manufacturing lends itself well to the manufacture of aerospace parts due to the high compl...
Additive manufacturing (AM) is one of the recently studied research areas, due to its ability to eli...
JPO acknowledges Fundação para a Ciência e a Tecnologia (FCT - MCTES) for its financial support via ...
Metal Additive Manufacturing (AM) has begun its revolution in various high value industry sectors th...
Additive manufacturing (AM) produces near-net-shaped parts directly from a 3D-CAD model in a layer-b...
One of the factors limiting the use of additive manufacturing, particularly powder bed processes, is...
Laser powder bed fusion (L-PBF) Additive Manufacturing (AM) has exponentially grown in the last deca...
Substantial efforts have been placed on characterizing and modeling additive manufacturing processe...
Research in metallic additive manufacturing (AM) has been rapidly growing over the past 10 years, wi...
At the writing of this Thesis, additive manufacturing (AM) also known as 3D printing, has been popul...
Additive manufacturing (AM) technology has been utilized as promising material process because of en...
Despite the accelerated growth of laser-powder bed fusion in recent years, there are still major obs...
Metal Additive Manufacturing (AM) promises an era of highly flexible part production, replete with u...
The production of metallic parts by additive manufacturing (AM) is of significant interest to indus...
Additive manufacturing (AM), or layer-by-layer part fabrication, is enabling the materialization of ...
Additive manufacturing lends itself well to the manufacture of aerospace parts due to the high compl...
Additive manufacturing (AM) is one of the recently studied research areas, due to its ability to eli...
JPO acknowledges Fundação para a Ciência e a Tecnologia (FCT - MCTES) for its financial support via ...
Metal Additive Manufacturing (AM) has begun its revolution in various high value industry sectors th...
Additive manufacturing (AM) produces near-net-shaped parts directly from a 3D-CAD model in a layer-b...
One of the factors limiting the use of additive manufacturing, particularly powder bed processes, is...
Laser powder bed fusion (L-PBF) Additive Manufacturing (AM) has exponentially grown in the last deca...
Substantial efforts have been placed on characterizing and modeling additive manufacturing processe...
Research in metallic additive manufacturing (AM) has been rapidly growing over the past 10 years, wi...
At the writing of this Thesis, additive manufacturing (AM) also known as 3D printing, has been popul...
Additive manufacturing (AM) technology has been utilized as promising material process because of en...
Despite the accelerated growth of laser-powder bed fusion in recent years, there are still major obs...
Metal Additive Manufacturing (AM) promises an era of highly flexible part production, replete with u...