Direct Inkjet Printing of Dental Prostheses Made of Zirconia
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2009-07-01
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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
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Abstract (AI)
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.
Key Findings
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.
Research Object
Zirconia dental prostheses manufactured by direct inkjet printing (3D-printed and sintered posterior crowns)
Research Subject
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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