© 2016 Australian Ceramic Society. The additive manufacturing of bioceramic parts has been investigated since the 1980s. This paper offers an overview of the present achievements in the production of alumina, zirconia and hydroxyapatite parts by means of selective laser sintering/melting of a powder bed or stereolithography. A focus is placed on these specific materials because of their widespread use in the biomedical field. It demonstrates that even though the manufacturing of parts with these processes is possible from pure bioceramics, the use of a binder (or another chemical adjuvant) is required in order to achieve good mechanical properties. Still, improvements in the raw material preparation and in the comprehension of the physical ...
Additive manufacturing (AM; aka 3D printing) has the potential to rapidly shape parts, without compr...
Oxide ceramics such as Alumina (Al2O3) and Zirconia (ZrO2) are widely utilized in various engineerin...
Abstract In view of its high mechanical performance, outstanding aesthetic qualities, and biological...
OBJECTIVE The objective of this narrative review was to summarize the current status and future per...
In the current study, materials and systems for the fabrication of customized bioceramic parts by us...
Additive manufacturing (AM) has many advantages and became a valid manufacturing technique for polym...
Additive manufacturing (AM) has many advantages and became a valid manufacturing technique for polym...
International audienceCurrent architectural and production limitations prevent the manufacturing sta...
Rapid Prototyping (RP) techniques facilitate the manufacturing of components with complex geometry, ...
Additive manufacturing (also known as 3D printing) process is an emerging technique for the fabricat...
Selective Laser Sintering (SLS) process is employed for fabrication of biocerarnics for orthopedic ...
Additive Manufacturing (AM) technologies of ceramic components are powder technological routes inclu...
The bioceramic material hydroxyapatite (HA) is widely used in the field of bone repair. Based on add...
Additive manufacturing (AM), especially powder bed laser sintering (PBLS), has been an increasingly ...
'Additive manufacturing' (AM) refers to a class of manufacturing processes based on the building of ...
Additive manufacturing (AM; aka 3D printing) has the potential to rapidly shape parts, without compr...
Oxide ceramics such as Alumina (Al2O3) and Zirconia (ZrO2) are widely utilized in various engineerin...
Abstract In view of its high mechanical performance, outstanding aesthetic qualities, and biological...
OBJECTIVE The objective of this narrative review was to summarize the current status and future per...
In the current study, materials and systems for the fabrication of customized bioceramic parts by us...
Additive manufacturing (AM) has many advantages and became a valid manufacturing technique for polym...
Additive manufacturing (AM) has many advantages and became a valid manufacturing technique for polym...
International audienceCurrent architectural and production limitations prevent the manufacturing sta...
Rapid Prototyping (RP) techniques facilitate the manufacturing of components with complex geometry, ...
Additive manufacturing (also known as 3D printing) process is an emerging technique for the fabricat...
Selective Laser Sintering (SLS) process is employed for fabrication of biocerarnics for orthopedic ...
Additive Manufacturing (AM) technologies of ceramic components are powder technological routes inclu...
The bioceramic material hydroxyapatite (HA) is widely used in the field of bone repair. Based on add...
Additive manufacturing (AM), especially powder bed laser sintering (PBLS), has been an increasingly ...
'Additive manufacturing' (AM) refers to a class of manufacturing processes based on the building of ...
Additive manufacturing (AM; aka 3D printing) has the potential to rapidly shape parts, without compr...
Oxide ceramics such as Alumina (Al2O3) and Zirconia (ZrO2) are widely utilized in various engineerin...
Abstract In view of its high mechanical performance, outstanding aesthetic qualities, and biological...