International audiencePurpose The purpose of this work is to introduce a novel approach of using additive manufacturing (AM) to produce dense complex ceramic and metallic parts. Powder 3D printing has been gaining popularity due to its ease of use and versatility. However, powder-based methods such as Selective Laser Melting (SLM) and Sintering (SLS), utilizes high power lasers which generate thermal shock conditions in metals and are not ideal for ceramics due to their high melting temperature. Indirect additive manufacturing methods have been explored to address the above issues but have proven to be wasteful and time-consuming. Design/methodology/approach In this work, a novel approach of producing high density net-shaped prototypes usin...
An additive manufacturing technique for high-strength oxide ceramics is presented. Based on selectiv...
© 2016 CIRP. Thanks to the exceptional combination of mechanical, thermal, chemical and biological ...
Purpose The purpose of this paper is to develop a hybrid additive/subtractive manufacturing platfor...
Additive Manufacturing (AM) technologies of ceramic components are powder technological routes inclu...
Additive manufacturing (AM; aka 3D printing) has the potential to rapidly shape parts, without compr...
Structured Abstract: Purpose – The purpose of this paper is to compare different powder metallurgy ...
OBJECTIVE The objective of this narrative review was to summarize the current status and future per...
Additive manufacturing (AM; aka 3D printing) has the potential to rapidly shape parts with an almost...
Technical ceramics, like alumina (Al2O3) and silicon carbide (SiC), display a number of material pro...
In this thesis an additive manufacturing (AM) route based on the selective laser sintering (SLS) pri...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
An additive manufacturing technique for high-strength oxide ceramics is presented. Based on selectiv...
© 2016 CIRP. Thanks to the exceptional combination of mechanical, thermal, chemical and biological ...
Purpose The purpose of this paper is to develop a hybrid additive/subtractive manufacturing platfor...
Additive Manufacturing (AM) technologies of ceramic components are powder technological routes inclu...
Additive manufacturing (AM; aka 3D printing) has the potential to rapidly shape parts, without compr...
Structured Abstract: Purpose – The purpose of this paper is to compare different powder metallurgy ...
OBJECTIVE The objective of this narrative review was to summarize the current status and future per...
Additive manufacturing (AM; aka 3D printing) has the potential to rapidly shape parts with an almost...
Technical ceramics, like alumina (Al2O3) and silicon carbide (SiC), display a number of material pro...
In this thesis an additive manufacturing (AM) route based on the selective laser sintering (SLS) pri...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
The extrusion-based additive manufacturing (EAM) technique is recently being employed for rapid prod...
An additive manufacturing technique for high-strength oxide ceramics is presented. Based on selectiv...
© 2016 CIRP. Thanks to the exceptional combination of mechanical, thermal, chemical and biological ...
Purpose The purpose of this paper is to develop a hybrid additive/subtractive manufacturing platfor...