Direct Ink Writing of Three‐Dimensional Ceramic Structures
Прямая печать чернилами трехмерных керамических структур
2006-11-30
SCID: 54.1/jvggupqh
Discuss with AI
3D ceramic structuresceramic inks rheologydirect ink writing (DIW)droplet-based DIWfilament-based DIW
Figures from the paper
Abstract (AI)
The ability to pattern ceramic materials in three dimensions (3D) is critical for structural, functional, and biomedical applications. One facile approach is direct ink writing (DIW), in which 3D structures are built layer‐by‐layer through the deposition of colloidal‐ or polymer‐based inks. This approach allows one to design and rapidly fabricate ceramic materials in complex 3D shapes without the need for expensive tooling, dies, or lithographic masks. In this feature article, we present both droplet‐ and filament‐based DIW techniques. We focus on the various ink designs and their corresponding rheological behavior, ink deposition mechanics, potential shapes and the toolpaths required, and representative examples of 3D ceramic structures assembled by each technique. The opportunities and challenges associated with DIW are also highlighted.
Key Findings
1
DIW can use both droplet-based and filament-based deposition techniques for constructing ceramic architectures.
2
Direct ink writing (DIW) enables fabrication of complex 3D ceramic structures layer-by-layer without tooling, dies, or lithographic masks.
3
Successful DIW requires tailored ink designs with specific rheological behaviors matched to deposition mechanics and toolpath strategies.
4
The article presents representative examples showing DIW can produce structurally and functionally relevant 3D ceramic shapes for structural, functional, and biomedical applications.
5
The paper identifies both opportunities and challenges associated with DIW for 3D ceramics, implying limitations remain to be addressed.
Research Object
Three-dimensional ceramic structures fabricated by direct ink writing (DIW)
Research Subject
Ink designs, rheological behavior, deposition mechanics, toolpaths, and fabrication capabilities and challenges of droplet- and filament-based DIW for producing complex 3D ceramic shapes
Publication Details
Publication Date
2006-11-30
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest
Cited by5
Processes and materials used for direct writing technologies: A review2021
Additive Manufacturing of Ceramic Materials via Direct Ink Writing (DIW): A Review2026
Additive manufacturing of zirconia ceramics: a state-of-the-art review2020
Direct ink writing advances in multi-material structures for a sustainable future2020
Direct Inkjet Printing of Dental Prostheses Made of Zirconia2009