Several commercial ceramic resins are nowadays available in the market of Additive Manufacturing, making more approachable ceramic stereolithography (CS) to an extended audience of users, from academic to industrial fields. Lack of knowledge in terms of material characterization and expected behavior in the manufacturing process are the main problems that involve difficulties in obtaining precise, dense, resistant, and crack-free ceramic parts. This article presents a characterization of a porcelain-based commercial ceramic resin for digital light processing (DLP), Porcelite® by Tethon 3D, and a study on the printing dimensional accuracy and cracks formation in sintered samples in dependence on the process parameters used have been performe...
Paste rheology and printing parameters contribute to a great extent to engineer the properties of ce...
Stereolithography based 3D printing provides an efficient pathway to fabricate alumina ceramics, and...
The main aim of the present paper is to study and analyze surface roughness, shrinkage, porosity, an...
A stereolithography-based additive manufacturing technique has been used for the fabrication of adva...
Stereolithography (SL) is a process that uses photosensitive polymer solutions to create 3D parts i...
Ceramic parts generally have poor machinability due to their high hardness and high brittleness. Res...
3D printing, alongside the rapidly advancing field of porous ceramics, is quickly expanding the hori...
International audienceTo meet industry's expectations for manufacturing ceramic parts by stereolitho...
Additive manufacturing has been found to be suitable processing method for ceramic materials in rece...
Ceramics, due to their high melting temperatures, are an attractive material choice when it comes to...
In order to obtain 3D printed alumina ceramic cores with isotropic shrinkage, a pore former was adde...
Ceramic 3D printing based on stereolithography has attracted wide attention because it can fabricate...
Stereolithography (SL) is a technique allowing additive manufacturing of complex ceramic parts by se...
Ceramic stereolithography is a method of ceramic solid free-form fabrication accomplished by additiv...
Stereolithography is a layer-by-layer building fabrication technique enabling production of advanced...
Paste rheology and printing parameters contribute to a great extent to engineer the properties of ce...
Stereolithography based 3D printing provides an efficient pathway to fabricate alumina ceramics, and...
The main aim of the present paper is to study and analyze surface roughness, shrinkage, porosity, an...
A stereolithography-based additive manufacturing technique has been used for the fabrication of adva...
Stereolithography (SL) is a process that uses photosensitive polymer solutions to create 3D parts i...
Ceramic parts generally have poor machinability due to their high hardness and high brittleness. Res...
3D printing, alongside the rapidly advancing field of porous ceramics, is quickly expanding the hori...
International audienceTo meet industry's expectations for manufacturing ceramic parts by stereolitho...
Additive manufacturing has been found to be suitable processing method for ceramic materials in rece...
Ceramics, due to their high melting temperatures, are an attractive material choice when it comes to...
In order to obtain 3D printed alumina ceramic cores with isotropic shrinkage, a pore former was adde...
Ceramic 3D printing based on stereolithography has attracted wide attention because it can fabricate...
Stereolithography (SL) is a technique allowing additive manufacturing of complex ceramic parts by se...
Ceramic stereolithography is a method of ceramic solid free-form fabrication accomplished by additiv...
Stereolithography is a layer-by-layer building fabrication technique enabling production of advanced...
Paste rheology and printing parameters contribute to a great extent to engineer the properties of ce...
Stereolithography based 3D printing provides an efficient pathway to fabricate alumina ceramics, and...
The main aim of the present paper is to study and analyze surface roughness, shrinkage, porosity, an...