Direct Inkjet Printing of Dental Prostheses Made of Zirconia

Прямая струйная печать зубных протезов из циркония
Amos Zeichner, Rainer Telle, Horst Fischer, Jörg Ebert, Emre Özkol, Krishna Uibel, Ö. Weiß, U. Koops
2009-07-01

direct inkjet printingdrop-on-demand inkjet printermechanical properties (strength 763 MPa, fracture toughness 6.7 MPa·m^0.5)zirconia dental restorationszirconia-based ceramic suspension
CAD/CAM milling systems provide a rapid and individual method for the manufacturing of zirconia dental restorations. However, the disadvantages of these systems include limited accuracy, possible introduction of microscopic cracks, and a waste of material due to the principle of the 'subtractive process'. The hypothesis of this study was that these issues can be overcome by a novel generative manufacturing technique, direct inkjet printing. A tailored zirconia-based ceramic suspension with 27 vol% solid content was synthesized. The suspension was printed on a conventional, but modified, drop-on-demand inkjet printer. A cleaning unit and a drying device allowed for the build-up of dense components of the size of a posterior crown. A characteristic strength of 763 MPa and a mean fracture toughness of 6.7 MPam(0.5) were determined on 3D-printed and subsequently sintered specimens. The novel technique has great potential to produce, cost-efficiently, all-ceramic dental restorations at high accuracy and with a minimum of materials consumption.
1
3D-printed and sintered zirconia specimens exhibited a characteristic strength of 763 MPa.
2
3D-printed and sintered zirconia specimens showed a mean fracture toughness of 6.7 MPam(0.5).
3
A tailored zirconia-based ceramic suspension with 27 vol% solid content was synthesized for direct inkjet printing of dental prostheses.
4
Direct inkjet printing can potentially overcome CAD/CAM milling disadvantages by enabling cost-efficient, high-accuracy all-ceramic restorations with minimal material waste.
5
Direct inkjet printing was implemented on a modified drop-on-demand inkjet printer with added cleaning and drying units to build dense posterior-crown-sized components.

Zirconia dental prostheses manufactured by direct inkjet printing (3D-printed and sintered posterior crowns)

Mechanical and manufacturing performance of the direct inkjet printing process for zirconia dental restorations, including material formulation (27 vol% zirconia suspension), ability to build dense posterior-crown-sized components, characteristic strength (763 MPa) and fracture toughness (6.7 MPa·m0.5), and potential for high accuracy and reduced material waste

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2009-07-01
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Amos Zeichner
Rainer Telle
Horst Fischer
Jörg Ebert
Emre Özkol
Krishna Uibel
Ö. Weiß
U. Koops
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