Stereolithography-based additive manufacturing of lithium disilicate glass ceramic for dental applications.


Journal

Materials science & engineering. C, Materials for biological applications
ISSN: 1873-0191
Titre abrégé: Mater Sci Eng C Mater Biol Appl
Pays: Netherlands
ID NLM: 101484109

Informations de publication

Date de publication:
Nov 2020
Historique:
received: 09 12 2019
revised: 08 06 2020
accepted: 08 06 2020
entrez: 19 8 2020
pubmed: 19 8 2020
medline: 15 5 2021
Statut: ppublish

Résumé

With additive manufacturing (AM) on the rise in industrial production, different industries are looking for a way to benefit from the advantages over conventional manufacturing methods like milling or casting. The layer by layer approach allows the parallel construction of different complex structures with simultaneous customization of the parts, while waste material is significantly reduced. This is especially interesting for the processing of advanced ceramic materials, where often customized and single parts are required. Regarding ceramics, Lithographic Ceramic Manufacturing (LCM) provides the highest surface quality and achievable precision compared to any other AM technologies, which is necessary to meet the high demands from dental industry regarding accuracy and reproducibility. At TU Wien, we achieved expertise in printing different kinds of ceramics and glasses by using specially developed stereolithography printers based on digital light processing (DLP) followed by a thermal debinding and sintering processes. In dental industry, glass ceramic materials are widely used for customized and aesthetic restorations. This work deals with the processing of lithium disilicate via an AM technology, offering highly dense (>99%), full ceramic parts which meet the requirements for the use as dental restorations. With outstanding mechanical properties of over 400 MPa flexural strength, excellent translucency and accuracy, veneers, crowns and even bridges, especially for the anterior tooth area can be reproducibly printed, debinded and sintered.

Identifiants

pubmed: 32806296
pii: S0928-4931(19)34557-6
doi: 10.1016/j.msec.2020.111180
pii:
doi:

Substances chimiques

Dental Materials 0
lithia disilicate 0
Dental Porcelain 12001-21-7
Glass ceramics 85422-94-2

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

111180

Informations de copyright

Copyright © 2020 Elsevier B.V. All rights reserved.

Auteurs

Sonja Baumgartner (S)

Institute of Materials Science and Technology, Christian Doppler Laboratory 'Photopolymers in Digital and Restorative Dentistry', TU Wien, Getreidemarkt 9, 1060 Vienna, Austria. Electronic address: sonja.baumgartner@tuwien.ac.at.

Robert Gmeiner (R)

Institute of Materials Science and Technology, Christian Doppler Laboratory 'Photopolymers in Digital and Restorative Dentistry', TU Wien, Getreidemarkt 9, 1060 Vienna, Austria. Electronic address: robert.gmeiner@cubicure.com.

Julia Anna Schönherr (JA)

Institute of Materials Science and Technology, Christian Doppler Laboratory 'Photopolymers in Digital and Restorative Dentistry', TU Wien, Getreidemarkt 9, 1060 Vienna, Austria. Electronic address: julia-anna.schoenherr@tuwien.ac.at.

Jürgen Stampfl (J)

Institute of Materials Science and Technology, Christian Doppler Laboratory 'Photopolymers in Digital and Restorative Dentistry', TU Wien, Getreidemarkt 9, 1060 Vienna, Austria. Electronic address: juergen.stampfl@tuwien.ac.at.

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Classifications MeSH