Additive Manufacturing of Ceramic Materials via Direct Ink Writing (DIW): A Review
Аддитивное производство керамических материалов методом прямой печати чернил (Direct Ink Writing, DIW): обзор
2026-01-28
SCID: 54.1/qdjn7x76
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Direct Ink WritingRobocastingceramic pastesfilament depositionrheological properties
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Abstract (AI)
In additive manufacturing technologies, the use of pastes and inks based on materials such as clay to create three-dimensional objects layer by layer has opened new possibilities in fields such as engineering and biomedicine. This review article aims to provide a comprehensive understanding of 3D printing of ceramic pastes through Direct Ink Writing (DIW), also referred to as Robocasting. DIW offers specific advantages for ceramic 3D printing, including the ability to extrude highly loaded pastes with customized rheological properties to accommodate a broad spectrum of ceramic compositions, varying from conventional clays to advanced ceramics. It is characterized by filament deposition control, which facilitates the fabrication of complex, porous, or customized architectures while simultaneously minimizing material waste. Through a bibliometric analysis of the literature published between 2020 and 2024, the most relevant studies regarding printing system architectures, ceramic paste formulations, and adjustment of parameters to obtain high-quality parts were identified. This work presents relevant and accurate explanations of the DIW technology, supporting researchers and industry professionals seeking to initiate or improve ceramic 3D printing processes for a wide range of applications.
Key Findings
1
A bibliometric analysis (2020–2024) identified the most relevant studies on printing system architectures, paste formulations, and parameter adjustments for high-quality ceramic parts.
2
DIW's filament deposition control facilitates fabrication of complex, porous, and customized ceramic architectures while minimizing material waste.
3
Direct Ink Writing (DIW) enables extrusion of highly loaded ceramic pastes with customized rheological properties across a wide range of compositions from clays to advanced ceramics.
4
The review provides comprehensive explanations of DIW technology to support researchers and industry professionals in initiating or improving ceramic 3D printing processes.
Research Object
Ceramic pastes/inks and their use in Direct Ink Writing (DIW) additive manufacturing (robocasting)
Research Subject
Printing of ceramic pastes via DIW focusing on printing system architectures, ceramic paste formulations, rheological/property adjustments, process parameters, and filament deposition control to produce high-quality, complex/porous/customized ceramic parts
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2026-01-28
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