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Embedded 3D Printing of Architected Ceramics via Microwave‐Activated Polymerization

Benito Román‐Manso, Robert D. Weeks, Ryan L. Truby, Jennifer A. Lewis

2023Advanced Materials33 citationsDOI

Abstract

Light- and ink-based 3D printing methods have vastly expanded the design space and geometric complexity of architected ceramics. However, light-based methods are typically confined to a relatively narrow range of preceramic and particle-laden resins, while ink-based methods are limited in geometric complexity due to layerwise assembly. Here, embedded 3D printing is combined with microwave-activated curing to generate architected ceramics with spatially controlled composition in freeform shapes. Aqueous colloidal inks are printed within a support matrix, rapidly cured via microwave-activated polymerization, and subsequently dried and sintered into dense architectures composed of one or more oxide materials. This integrated manufacturing method opens new avenues for the design and fabrication of complex ceramic architectures with programmed composition, density, and form for myriad applications.

Topics & Concepts

Materials science3D printingCeramicInkwellFabricationMicrowavePolymerizationCuring (chemistry)NanotechnologyComposite materialPolymerComputer scienceTelecommunicationsPathologyMedicineAlternative medicineAdditive Manufacturing and 3D Printing TechnologiesInnovations in Concrete and Construction MaterialsTiO2 Photocatalysis and Solar Cells
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