Recent Advances on 3D-Printed Zirconia-Based Dental Materials: A Review
Недавние достижения в 3D-печати диоксид циркония для стоматологических материалов: обзор
2023-02-24
SCID: 54.1/veuamzsv
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3D printingadditive manufacturing (AM)digital light processing (DLP)stereolithography (SLA)zirconia-based dental materials
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Abstract (AI)
Zirconia-based materials are widely used in dentistry due to their biocompatibility and suitable mechanical and tribological behavior. Although commonly processed by subtractive manufacturing (SM), alternative techniques are being explored to reduce material waste, energy consumption and production time. 3D printing has received increasing interest for this purpose. This systematic review intends to gather information on the state of the art of additive manufacturing (AM) of zirconia-based materials for dental applications. As far as the authors know, this is the first time that a comparative analysis of these materials' properties has been performed. It was performed following the PRISMA guidelines and using PubMed, Scopus and Web of Science databases to select studies that met the defined criteria without restrictions on publication year. Stereolithography (SLA) and digital light processing (DLP) were the techniques most focused on in the literature and the ones that led to most promising outcomes. However, other techniques, such as robocasting (RC) and material jetting (MJ), have also led to good results. In all cases, the main concerns are centered on dimensional accuracy, resolution, and insufficient mechanical strength of the pieces. Despite the struggles inherent to the different 3D printing techniques, the commitment to adapt materials, procedures and workflows to these digital technologies is remarkable. Overall, the research on this topic can be seen as a disruptive technological progress with a wide range of application possibilities.
Key Findings
1
Major remaining concerns across AM techniques are dimensional accuracy, resolution, and insufficient mechanical strength of printed zirconia pieces.
2
Other AM techniques such as robocasting (RC) and material jetting (MJ) have also produced good results for zirconia-based dental applications.
3
Research shows active adaptation of materials, procedures, and workflows to digital AM technologies, indicating disruptive technological progress with broad application potential.
4
Stereolithography (SLA) and digital light processing (DLP) are the most studied AM techniques and have produced the most promising outcomes for zirconia dental parts.
5
This systematic review is the first comparative analysis of properties of additively manufactured zirconia-based dental materials following PRISMA guidelines.
6
Zirconia-based materials are widely used in dentistry for biocompatibility and suitable mechanical and tribological behavior.
Research Object
Zirconia-based dental materials produced by 3D printing (additive manufacturing) techniques
Research Subject
Properties and performance aspects of 3D-printed zirconia dental materials, including dimensional accuracy, resolution, and mechanical strength across different AM techniques (SLA, DLP, robocasting, material jetting)
Publication Details
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2023-02-24
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References available in scid.ai4
Evaluation of Physical Properties of Zirconia Suspension with Added Silane Coupling Agent for Additive Manufacturing Processes2022
Additive manufacturing of zirconia ceramics: a state-of-the-art review2020
Additive manufacturing technologies for processing zirconia in dental applications2020
Preferred reporting items for systematic review and meta-analysis protocols (PRISMA-P) 2015 statement2015
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