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Journal article

Hybrid inks for 3D printing of tall BaTiO3-based ceramics

In Open Ceramics 2021, Volume 6, pp. 100110
From

Department of Energy Conversion and Storage, Technical University of Denmark1

Functional Oxides, Department of Energy Conversion and Storage, Technical University of Denmark2

Politecnico di Milano3

Imaging and Structural Analysis, Department of Energy Conversion and Storage, Technical University of Denmark4

Ink formulation is one of the main challenges with ceramic 3D printing. Here, we present a new, reactive-colloidal hybrid ink for 3D printing by robocasting of BaTiO3-based ceramics. The hybrid ink combines a titanium isopropoxide-based sol-gel base with a colloidal dispersion of powder, here demonstrated with BaTiO3 both as the sol-gel (by reaction of titanium isopropoxide and barium oxide) and colloidal (by addition of BaTiO3 powder) parts.

Addition of glycerol was necessary to avoid fast precipitation and poor dispersion of BaTiO3 from the reaction of BaO and Ti-isopropoxide. With a solid loading of 40 ​vol% BaTiO3, 10 ​mm tall structures could be printed with minimal deformation from slumping. The BaTiO3 shows good piezo-, ferro- and dielectric properties after sintering, with a piezoelectric charge coefficient (d33 ​= ​159 ​pC/N) in the range commonly reported for BaTiO3.

The hybrid inks developed in this work are therefore suitable for robocasting of BaTiO3-based electroceramics.

Language: English
Publisher: Elsevier
Year: 2021
Pages: 100110
ISSN: 26665395
Types: Journal article
DOI: 10.1016/j.oceram.2021.100110
ORCIDs: Gadea, Christophe , Simonsen, Søren Bredmose , Esposito, Vincenzo , Bowen, Jacob R. and Bjørnetun Haugen, Astri

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