Challenging structural applications such as customized jet engine parts are increasingly fabricated by Selective Laser Melting (SLM) of Inconel 718 powder. The as-built surface quality of SLM parts is however inferior of the machined version and the fatigue behavior is negatively affected. The as-built fatigue response of SLM Inconel 718 was quantified here using three sets of directional specimens. Since the surface quality is influenced by powder characteristics, process parameters and layer-wise fabrication, fatigue results showed a directional contribution that was interpreted using metallography and fractography
Selective Laser Melting is an additive manufacturing technology capable of producing relatively dens...
This paper is dedicated to understanding fatigue crack initiation for an Inconel 625 manufactured by...
Powder bed fusion based additively manufactured components are known to have poor surface quality, e...
The selective laser melting (SLM) technology applied to Inconel 718 produces near-net shape parts of...
AbstractRecent research efforts in additive manufacturing have focused on developing parts made of I...
The prevalence of additive manufacturing (AM), or 3D printing, has grown in recent decades as a meth...
It has been recognized that parts produced by additive manufacturing with surfaces in the “as-built”...
The fatigue performance of materials, such as Inconel 718, when produced by Laser Powder Bed fusion,...
Additive layer manufacturing has recently gained a lot of interest due to the feasibility of produci...
Metal additive manufacturing, in particular Selective Laser Melting (SLM), emerged as a technology ...
The flexibility in design offered by advanced additive manufacturing technologies makes these proces...
Selective Laser Melting (SLM) emerged as a technology suitable for the industrial production of stru...
Growth of long fatigue cracks is investigated in Inconel 718 superalloy produced by selective laser ...
Additive Manufacturing (AM), commonly known as 3D printing, exemplifies the recently emerging proces...
Powder bed fusion based additively manufactured components are known to have poor surface quality, e...
Selective Laser Melting is an additive manufacturing technology capable of producing relatively dens...
This paper is dedicated to understanding fatigue crack initiation for an Inconel 625 manufactured by...
Powder bed fusion based additively manufactured components are known to have poor surface quality, e...
The selective laser melting (SLM) technology applied to Inconel 718 produces near-net shape parts of...
AbstractRecent research efforts in additive manufacturing have focused on developing parts made of I...
The prevalence of additive manufacturing (AM), or 3D printing, has grown in recent decades as a meth...
It has been recognized that parts produced by additive manufacturing with surfaces in the “as-built”...
The fatigue performance of materials, such as Inconel 718, when produced by Laser Powder Bed fusion,...
Additive layer manufacturing has recently gained a lot of interest due to the feasibility of produci...
Metal additive manufacturing, in particular Selective Laser Melting (SLM), emerged as a technology ...
The flexibility in design offered by advanced additive manufacturing technologies makes these proces...
Selective Laser Melting (SLM) emerged as a technology suitable for the industrial production of stru...
Growth of long fatigue cracks is investigated in Inconel 718 superalloy produced by selective laser ...
Additive Manufacturing (AM), commonly known as 3D printing, exemplifies the recently emerging proces...
Powder bed fusion based additively manufactured components are known to have poor surface quality, e...
Selective Laser Melting is an additive manufacturing technology capable of producing relatively dens...
This paper is dedicated to understanding fatigue crack initiation for an Inconel 625 manufactured by...
Powder bed fusion based additively manufactured components are known to have poor surface quality, e...