Vat Photopolymerization of Additively Manufactured Zirconia Ceramic Structures from Slurries of Surface Functionalized Particles: A Critical Review
Фоторезистивное осаждение в ванне (vat photopolymerization) структур из циркониевой керамики, изготовленных аддитивными методами, из суспензий поверхностно-функционализированных частиц: критический обзор
2025-08-18
SCID: 54.1/wak444h8
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debinding and sintering processessurface functionalized particlesvat photopolymerization (VPP)zirconia (ZrO2) ceramicszirconia slurry rheology and curing
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Abstract (AI)
Zirconia (ZrO2) ceramics and composites have attracted much attention in aerospace, biomedical and energy fields due to their high hardness, high wear resistance, excellent chemical stability and biocompatibility. However, the brittleness of ceramics and the high cost of molds have made it difficult for traditional processing techniques to manufacture complex structural and functional components efficiently. Additive manufacturing technology has successfully overcome these challenges by optimizing the preparation process and improving production efficiency. Among them, vat photopolymeriztion (VPP) has been demonstrated to offer distinct advantages, including high precision, high efficiency and low cost. It provides a novel approach to the preparation of zirconia ceramics. VPP preparation of zirconia ceramics and composites needs to consider various steps such as slurry preparation, structural design and printing, debinding and sintering. This review introduces common VPP technologies related to zirconia ceramics and summarizes the factors affecting the rheological and curing properties of zirconia slurry, in order to provide researchers with a reference for studying VPP preparation of zirconia. The current optimization methods for light-curing zirconia slurry formulations are focused on, and common methods for surface modification and optimization of slurry composition and solid loading are introduced. The influencing factors of the printing process are summarized, and the current research on surface texturing of VPP preparation and the influence of printing parameters on the performance and accuracy of the components are introduced. The effects of debinding/sintering processes on cured zirconia ceramics are also summarized. The applications of VPP zirconia ceramics and composites are proposed, especially for their use in biomedical and energy applications.
Key Findings
1
Common optimization strategies for light-curing zirconia slurries include particle surface modification and tuning of slurry formulations to improve flow and cure behavior.
2
Debinding and sintering processes critically influence the final properties of cured zirconia ceramics, impacting their suitability for biomedical and energy applications.
3
Printing process parameters and surface texturing significantly affect the performance and dimensional accuracy of VPP-produced zirconia components.
4
Successful VPP fabrication of zirconia requires careful control of slurry preparation, including rheological and curing properties influenced by surface functionalization, slurry composition, and solid loading.
5
Vat photopolymerization (VPP) offers high precision, high efficiency, and low cost for preparing complex zirconia (ZrO2) ceramic structures compared to traditional molding methods.
Research Object
Vat photopolymerization (VPP) fabrication process of additively manufactured zirconia (ZrO2) ceramic structures from surface-functionalized particle slurries
Research Subject
Factors affecting preparation and performance of VPP-printed zirconia ceramics, including slurry rheology and curing, surface functionalization and slurry formulation/solid loading optimization, printing parameters and surface texturing effects, and debinding/sintering impacts on component accuracy and properties
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2025-08-18
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References available in scid.ai7
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