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Cunico
FDM 5 / SLA/DLP 4 - extrusion- direct or wax- based like castable [18,19] [2,18] [2,18] [18] [18] [18] [2] [18] [2,18] [18] [2,3,18,19]
Additive manufacturing technologies Multijet BindJet direct or [18,19] [2] [2,18,20] [2,18] [2] [2,18] [19,20] [2,3,18,19] [18,19]
SLS 3 infiltrated [19] [19] [20] [2] [2] [18] [18] [18] [18] [18] [18] [18] [18]
SLM 2 [18,19] [18,19] [18,19] [18,19] [2,18]
CAD/ CAM 1 [3,16-19] [3,16-19] [3,16-19] [3,16-19] [3,18] [18] [18] [3,18] [3,18] [18] [18] [18,20] [18] [18] [18,20] [18,20] [16,18,20] [16,18,20] [18] 1- CAD, Computer-aided design; CAM, Computer-aided manufacturing; 2-SLM, Selective laser melting; 3-Selective laser sintering; 4-SLA, SLA, Stereolithography apparatus/DLP, Digital light projector;
Classic dentistry technologies Hot-pressed/ slip injection casting molded and ceramics Casting [17] [16,17] [17] [17] [17] [17] [16] [17] [18] [17] [18] [18] [18] [17] [18] [18] [18]
Table 1. State of the art of prosthodontical technologies
Sintering [16] [16] [16] [16] [16] [18] [18] [18] [18] [18] [18] [18]
Crown and bridges Denture holder patterns/lost Provisional temporary crown Dental model Surgical guide Surgical guide plate constructions All-ceramic Glass-ceramic Polymer-ceramic composite Metal-ceramic composite Polymeric material 5-FDM, Fused deposition modeling; 6-YTZP, Yttria stabilized zirconia.
Denture Copings Casting wax Splints Prosthetic Porcelain Y-TZP 6 Metallic
Applications Materials
International Journal of Bioprinting (2021)–Volume 7, Issue 1 91

