Within the scope of additive manufacturing of metal parts, a droplet generator for metal melts is proposed. Its magnetohydrodynamic (MHD) working principle is shown and the actuation force available for droplet generation is calculated. The design of such a printhead is shown to consist only of very few, non-moving parts and therefore it is of great simplicity. First results gained with a prototype printhead show that successful droplet generation is possible, but that pollution of the melt with oxides and sparks developing during the droplet generation process have to be overcome to fully exploit the potential of the proposed print head.ISSN:2212-827
As a result of teh success of reducing "time-to-market" of parts produced using the various Rapid Pr...
The shift towards 3D printing of functional products has provided a glimpse of the future in terms o...
Current additive manufacturing techniques focus on creating useful three dimensional (3D) objects fr...
We present a novel method for liquid metal drop-on-demand (DOD) additive manufacturing of three-dim...
This article presents a design and development of a drop-on-demand (DOD) droplets generator. This ge...
A review of Drop-on-Demand additive manufacturing methods was held. A method of complex forms alumin...
While commercial additive manufacturing processes involving direct metal wire or powder deposition a...
The common denominator of this thesis is the quest for processing a wider range of materials using i...
This report outlines the fabrication and improvement of a metal-droplet generator, which is used to ...
As a result of the success of reducing time-to-market of parts produced using the various Rapid Prot...
Drop-on-demand metal jetting is a recent additive manufacturing technology opening new opportunities...
In this paper, we exhibit a coilgun-based approach to drop-on-demand printing of liquids laden with ...
Magnetohydrodynamic (MHD) metal jetting is a novel additive manufacturing method where parts can be ...
The additive manufacturing (AM) process or three-dimensional printing (3DP) process is making stereo...
Magneto Hydro Dynamic (MHD) jetting is a promising new metal additive manufacturing technique that ...
As a result of teh success of reducing "time-to-market" of parts produced using the various Rapid Pr...
The shift towards 3D printing of functional products has provided a glimpse of the future in terms o...
Current additive manufacturing techniques focus on creating useful three dimensional (3D) objects fr...
We present a novel method for liquid metal drop-on-demand (DOD) additive manufacturing of three-dim...
This article presents a design and development of a drop-on-demand (DOD) droplets generator. This ge...
A review of Drop-on-Demand additive manufacturing methods was held. A method of complex forms alumin...
While commercial additive manufacturing processes involving direct metal wire or powder deposition a...
The common denominator of this thesis is the quest for processing a wider range of materials using i...
This report outlines the fabrication and improvement of a metal-droplet generator, which is used to ...
As a result of the success of reducing time-to-market of parts produced using the various Rapid Prot...
Drop-on-demand metal jetting is a recent additive manufacturing technology opening new opportunities...
In this paper, we exhibit a coilgun-based approach to drop-on-demand printing of liquids laden with ...
Magnetohydrodynamic (MHD) metal jetting is a novel additive manufacturing method where parts can be ...
The additive manufacturing (AM) process or three-dimensional printing (3DP) process is making stereo...
Magneto Hydro Dynamic (MHD) jetting is a promising new metal additive manufacturing technique that ...
As a result of teh success of reducing "time-to-market" of parts produced using the various Rapid Pr...
The shift towards 3D printing of functional products has provided a glimpse of the future in terms o...
Current additive manufacturing techniques focus on creating useful three dimensional (3D) objects fr...