The paper presents a uniquely designed device that enables controlled manufacturing of semi-fabricated products from thermoplastic ceramic suspensions by fused deposition modeling. Sintering of the products yields ceramics with high strength and hardness. We use ceramic aluminum oxide (Al2O3) as an example to prove that additive ceramic structures can be produced without noticeable boundaries between layers of the material
An extrusion-based additive manufacturing process, called the Ceramic On-Demand Extrusion (CODE) pro...
The work focuses on the 3D printing of glass infiltrated alumina ceramics. Thermoplastic filaments w...
The development of high-strength, low-density ceramic components is a critical area of research in t...
The paper presents a uniquely designed device that enables controlled manufacturing of semi-fabricat...
The feasibility of using the Fused Deposition ofCeramics (FDC) process to rapidly fabricate functio...
Ceramics are a class of materials delicate to shape due to their inherent inability to plastically d...
Fabrication of functional ceramics and composites has been attempted using fused deposition of cera...
In recent years, extrusion 3D printing processes have undergone an important development. They allow...
Additive manufacturing is seen by many as the holy grail of manufacturing, the ability to produce pa...
Purpose The purpose of this paper is to develop a hybrid additive/subtractive manufacturing platfor...
The feasibility of using the Fused Deposition of Ceramics (FDC) process to rapidly fabricate functi...
Additive Manufacturing (AM) technologies of ceramic components are powder technological routes inclu...
An extrusion-based additive manufacturing process, called the Ceramic On-Demand Extrusion (CODE) pro...
Solid Freeform Fabrication (SFF) is a technology that produces physical solid components or parts f...
Porous alumina stands as a good candidate for synthetic bone tissue scaffold material or porous cer...
An extrusion-based additive manufacturing process, called the Ceramic On-Demand Extrusion (CODE) pro...
The work focuses on the 3D printing of glass infiltrated alumina ceramics. Thermoplastic filaments w...
The development of high-strength, low-density ceramic components is a critical area of research in t...
The paper presents a uniquely designed device that enables controlled manufacturing of semi-fabricat...
The feasibility of using the Fused Deposition ofCeramics (FDC) process to rapidly fabricate functio...
Ceramics are a class of materials delicate to shape due to their inherent inability to plastically d...
Fabrication of functional ceramics and composites has been attempted using fused deposition of cera...
In recent years, extrusion 3D printing processes have undergone an important development. They allow...
Additive manufacturing is seen by many as the holy grail of manufacturing, the ability to produce pa...
Purpose The purpose of this paper is to develop a hybrid additive/subtractive manufacturing platfor...
The feasibility of using the Fused Deposition of Ceramics (FDC) process to rapidly fabricate functi...
Additive Manufacturing (AM) technologies of ceramic components are powder technological routes inclu...
An extrusion-based additive manufacturing process, called the Ceramic On-Demand Extrusion (CODE) pro...
Solid Freeform Fabrication (SFF) is a technology that produces physical solid components or parts f...
Porous alumina stands as a good candidate for synthetic bone tissue scaffold material or porous cer...
An extrusion-based additive manufacturing process, called the Ceramic On-Demand Extrusion (CODE) pro...
The work focuses on the 3D printing of glass infiltrated alumina ceramics. Thermoplastic filaments w...
The development of high-strength, low-density ceramic components is a critical area of research in t...