Processes and materials used for direct writing technologies: A review

Процессы и материалы, используемые в технологиях прямой печати: обзор
Eujin Pei, Mehdi Chougan, Seyed Hamidreza Ghaffar, Shahriar Bakrani Balani, Erdem Şahin
2021-07-27

Direct WritingRobocastingceramic extrusionextrusion-based manufacturingrheological properties
Direct Writing (DW), also known as Robocasting, is an extrusion-based layer-by-layer manufacturing technique suitable for manufacturing complex geometries. Different types of materials such as metals, composites, ceramics, biomaterials, and shape memory alloys can be used for DW. The simplicity and cost-efficiency of DW makes it convenient for different applications, from biomedical to optics. Recent studies on DW show a tendency towards the development of new materials and applications. This represents the necessity of a deep understanding of the principles and parameters of each technique, material, and process challenge. This review highlights the principles of many DW techniques, the recent advancements in material development, applications, process parameters, and challenges in each DW process. Since the quality of the printed parts by DW highly depend on the material extrusion, the focus of this review is mainly on the ceramic extrusion process and its challenges from rheological and material development point of view. This review delivers an insight into DW processes and the challenges to overcome for development of new materials and applications. The main objective of the review is to deliver necessary information for non-specialist and interdisciplinary researchers.
1
A deep understanding of technique-specific principles and parameters is necessary to overcome process challenges and enable development of new DW materials and applications.
2
DW's simplicity and cost-efficiency make it applicable to diverse fields from biomedical to optics, motivating ongoing development of new materials and applications.
3
Direct Writing (DW)/Robocasting is an extrusion-based, layer-by-layer manufacturing technique suitable for producing complex geometries across metals, composites, ceramics, biomaterials, and shape memory alloys.
4
Printed part quality in DW depends strongly on material extrusion, with ceramic extrusion highlighted as particularly sensitive to rheological and material-development challenges.
5
The review synthesizes principles, process parameters, recent material advancements, applications, and specific challenges for multiple DW techniques to inform non-specialist and interdisciplinary researchers.

Direct Writing (DW) technologies and associated materials, with emphasis on ceramic extrusion in robocasting

Principles, process parameters, material development, rheological challenges, and application-driven quality issues affecting material extrusion and printed-part quality in DW, especially for ceramic extrusion

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2021-07-27
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Authors
Eujin Pei
Mehdi Chougan
Seyed Hamidreza Ghaffar
Shahriar Bakrani Balani
Erdem Şahin
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