Advancements in DLP 3D printing: High strength alumina toughened zirconia ceramics for biomedical applications
Достижения в DLP 3D-печати: высокопрочные корунд-армированные циркониевые керамики для биомедицинских приложений
2024-05-06
SCID: 54.1/7pa5kcgt
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ATZDLP 3D printingDigital Light Processingalumina-toughened zirconiaphotosensitive ceramic slurry
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Abstract (AI)
Digital Light Processing (DLP) enables intricate ceramic part production from photosensitive ceramic slurry. While ZrO2 and Al2O3 are commonly studied, their composites are underexplored despite diverse applications. This study investigates fabricating high-strength, fully dense alumina-toughened zirconia (ATZ) parts using a low-cost desktop DLP printer designed for polymer printing. Various ATZ-based ceramic slurries (30, 35, 42.5 vol%) with different binders and dispersants were prepared and evaluated for curing and rheological properties. Promising formulations underwent debinding and sintering, resulting in homogenous microstructures with a well-distributed blend of the two phases. For the doped samples, SEM analysis revealed a good distribution of dopants and elongated dopant grains infused at higher temperatures. The 35 vol% ATZ exhibited exceptional average flexural strength of 1321 MPa, surpassing previous DLP-fabricated composites. This suggests no need for increased solid loading content. The findings demonstrate the potential of DLP in producing high-performance ceramic parts with tailored properties.
Key Findings
1
A low-cost desktop DLP printer (designed for polymers) can fabricate fully dense alumina-toughened zirconia (ATZ) ceramic parts.
2
Doped ATZ samples showed good dopant distribution and elongated dopant grains formed at higher sintering temperatures.
3
Overall results demonstrate DLP can produce high-performance ceramic parts with tailored properties for biomedical applications.
4
Successful debinding and sintering produced homogeneous microstructures with well-distributed zirconia and alumina phases.
5
The 35 vol% ATZ formulation achieved an average flexural strength of 1321 MPa, exceeding previously reported DLP-fabricated composites, indicating higher solid loading is unnecessary.
6
Three ATZ slurry solid loadings (30, 35, 42.5 vol%) with varied binders and dispersants were prepared and rheologically evaluated for DLP curing suitability.
Research Object
Alumina-toughened zirconia (ATZ) ceramic parts fabricated by desktop Digital Light Processing (DLP) 3D printing
Research Subject
Fabrication parameters and resulting mechanical and microstructural properties—including curing and rheological behavior of ATZ slurries, debinding/sintering outcomes, phase/dopant distribution, microstructure homogeneity, and flexural strength (e.g., 1321 MPa)—of DLP-printed ATZ ceramics
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2024-05-06
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