Zirconia UV-curable colloids for additive manufacturing via hybrid inkjet printing-stereolithography
УФ-отверждаемые коллоиды циркония для аддитивного производства методом гибридной струйной печати и стереолитографии
2017-12-21
SCID: 54.1/rd9zmaz7
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96% dense YSZ after sinteringUV-curable colloidsUV-curable monomers concentrationhybrid inkjet printing-stereolithographyyttria stabilized zirconia (YSZ)
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Abstract (AI)
Currently, additive manufacturing of ceramics by stereolithography (SLA) is limited to single materials and by a poor thickness resolution that strongly depends on the ceramic particles-UV light interaction. Combining selective laser curing with inkjet printing represents a novel strategy to overcome these constrains. Nonetheless, this approach requires UV-curable inks that allow hardening of the printed material and sintering to high density. In this work, we report how to design an ink for inkjet printing of yttria stabilized zirconia (YSZ) which can be impressed by addition of UV-curable monomers. We especially show how the formulation of the inks and particularly the UV-monomer concentration impacts the printability and the UV-curing. This leads to prints that are resistant to solvent washing first and densify to 96% dense YSZ layers after sintering.
Key Findings
1
Demonstrated that UV-monomer concentration critically affects both printability and UV-curing behavior of the inks.
2
Developed a UV-curable ink formulation for inkjet printing of yttria-stabilized zirconia (YSZ) by adding UV-curable monomers to colloidal suspensions.
3
Produced printed YSZ parts that are resistant to solvent washing after UV curing.
4
Proposed combining inkjet printing with selective laser curing (hybrid inkjet–stereolithography) as a strategy to overcome SLA limitations for ceramic additive manufacturing.
5
Sintered printed layers to achieve 96% dense YSZ after sintering.
Research Object
UV-curable inkjet-printable colloidal inks composed of yttria-stabilized zirconia (YSZ) particles with added UV-curable monomers for hybrid inkjet printing–stereolithography additive manufacturing
Research Subject
How ink formulation—particularly UV-monomer concentration—affects printability, UV-curing behavior, solvent resistance after printing, and the ability to densify to high-density (96% dense) YSZ layers upon sintering in hybrid inkjet printing–stereolithography
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2017-12-21
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