Additive manufacturing has brought about a real revolution in the manufacture of objects in a variety of application areas, overturning the traditional paradigm based on subtractive approaches. The potential benefits deriving from the application of these techniques in the field of ceramic materials extend to different industrial sectors, leading to shorter, more accurate and cost-effective manufacturing processes. Within the present review, we provide a transversal analysis of the state-of-the-art of the applications of vat-photopolymerization technologies, namely, stereolithography and digital light processing in relevant technological industrial/research fields of our times, including biomedicine, energy, environment, space and aerospace...
Future developments lead to increasing demands on mechatronic integrated devices (MID). Therefore, c...
In recent years, there have been rapid advances in our understanding of ceramic stereolithography (C...
Technical ceramics for high-performance applications can be additively manufactured using vat photop...
Stereolithography is known as one of the best Additive Manufacturing technologies in terms of geomet...
Additive manufacturing of ceramics has gained a lot of impetus recently due to its ability to do awa...
Additive manufacturing (AM) of ceramics through vat photopolymerization is a promising technique in ...
International audienceAttempts to improve the performance of ceramic parts have recently led to adva...
Technical ceramic parts can be produced by curing ceramic-filled resins in the vat photopolymerizati...
The aim of this review is a faithful report of the panorama of solutions adopted to fabricate a comp...
This research is divided into two main topics: vitrimer polymers and alumina ceramics. Additive manu...
Over the past decade, additive manufacturing has emerged as one of the most powerful manufacturing t...
Additive manufacturing (3D printing) has significantly changed the prototyping process in terms of t...
Additive manufacturing has been found to be suitable processing method for ceramic materials in rece...
Technical ceramic parts can be produced by curing ceramic-filled resins in the vat photopolymerizati...
Future developments lead to increasing demands on mechatronic integrated devices (MID). Therefore, c...
In recent years, there have been rapid advances in our understanding of ceramic stereolithography (C...
Technical ceramics for high-performance applications can be additively manufactured using vat photop...
Stereolithography is known as one of the best Additive Manufacturing technologies in terms of geomet...
Additive manufacturing of ceramics has gained a lot of impetus recently due to its ability to do awa...
Additive manufacturing (AM) of ceramics through vat photopolymerization is a promising technique in ...
International audienceAttempts to improve the performance of ceramic parts have recently led to adva...
Technical ceramic parts can be produced by curing ceramic-filled resins in the vat photopolymerizati...
The aim of this review is a faithful report of the panorama of solutions adopted to fabricate a comp...
This research is divided into two main topics: vitrimer polymers and alumina ceramics. Additive manu...
Over the past decade, additive manufacturing has emerged as one of the most powerful manufacturing t...
Additive manufacturing (3D printing) has significantly changed the prototyping process in terms of t...
Additive manufacturing has been found to be suitable processing method for ceramic materials in rece...
Technical ceramic parts can be produced by curing ceramic-filled resins in the vat photopolymerizati...
Future developments lead to increasing demands on mechatronic integrated devices (MID). Therefore, c...
In recent years, there have been rapid advances in our understanding of ceramic stereolithography (C...
Technical ceramics for high-performance applications can be additively manufactured using vat photop...