The material jetting process is one of the most established additive manufacturing techniques to create three-dimensional (3D) components with high resolution. Nevertheless, there are limited literature on the manufacturing process constraints and capabilities. This paper aims to correlate building orientation to dimensional accuracy and surface quality in order to investigate the material jetting process capabilities and limitations. A benchmark test part was proposed to include the intended feature geometry for characterization. This analysis is important to provide the manufacturing constraints using this printing technique, while also serves as design guidelines for 3D functional part design.ASTAR (Agency for Sci., Tech. and Research, S...
Additive Manufacturing (AM) technology has been increasing its penetration not only for the producti...
Purpose: The purpose of this paper is to investigate the effects of layer thickness, aspect ratio, p...
3D printing (3DP), commonly known as additive manufacturing (AM), is a promising technology that can...
Additive manufacturing (AM) technique allows the creation of parts with a high degree of design comp...
In recent years, multi-jet fusion technology became more popular as it has unlimited potential. Than...
Material jetting (MJ) technology is an additive manufacturing method that selectively cures liquid p...
This work seeks to elucidate the effect of surface slope and build orientation upon the surface fini...
In recent years, Additive Manufacturing (AM) has undergone a rapid growth, therefore several process...
The PolyJet material jetting process is uniquely qualified to create complex, multi-material structu...
Material jetting (MJ) technology is an additive manufacturing method that selectively cures liquid p...
Purpose: The purpose of this paper is to elucidate the effect of part thickness and build orientatio...
Material jetting-based (MJ) additive manufacturing (AM) is a promising manufacturing technology uniq...
The performance characterization of the manufacturing processes for additive manufacturing (AM) syst...
With advances in additive manufacturing, particularly in the area of three dimensional (3D) printing...
Binder jetting (BJ) has demonstrated high competitiveness among additive manufacturing processes on ...
Additive Manufacturing (AM) technology has been increasing its penetration not only for the producti...
Purpose: The purpose of this paper is to investigate the effects of layer thickness, aspect ratio, p...
3D printing (3DP), commonly known as additive manufacturing (AM), is a promising technology that can...
Additive manufacturing (AM) technique allows the creation of parts with a high degree of design comp...
In recent years, multi-jet fusion technology became more popular as it has unlimited potential. Than...
Material jetting (MJ) technology is an additive manufacturing method that selectively cures liquid p...
This work seeks to elucidate the effect of surface slope and build orientation upon the surface fini...
In recent years, Additive Manufacturing (AM) has undergone a rapid growth, therefore several process...
The PolyJet material jetting process is uniquely qualified to create complex, multi-material structu...
Material jetting (MJ) technology is an additive manufacturing method that selectively cures liquid p...
Purpose: The purpose of this paper is to elucidate the effect of part thickness and build orientatio...
Material jetting-based (MJ) additive manufacturing (AM) is a promising manufacturing technology uniq...
The performance characterization of the manufacturing processes for additive manufacturing (AM) syst...
With advances in additive manufacturing, particularly in the area of three dimensional (3D) printing...
Binder jetting (BJ) has demonstrated high competitiveness among additive manufacturing processes on ...
Additive Manufacturing (AM) technology has been increasing its penetration not only for the producti...
Purpose: The purpose of this paper is to investigate the effects of layer thickness, aspect ratio, p...
3D printing (3DP), commonly known as additive manufacturing (AM), is a promising technology that can...