Tselikos, Georgios, Rasul, Shahid, Groen, Pim, Li, Chunchun and Khaliq, Jibran (2021) In Situ Printing and Functionalization of Hybrid Polymer-Ceramic Composites Using a Commercial 3D Printer and Dielectrophoresis—A Novel Conceptual Design. Polymers, 13 (22). p. 3979. ISSN 2073-4360
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Abstract
Three-dimensional printing-based additive manufacturing has emerged as a new frontier in materials science, with applications in the production of functionalized polymeric-based hybrid composites for various applications. In this work, a novel conceptual design was conceived in which an AC electric field was integrated into a commercial 3D printer (-based fused filament fabrication (FFF) working principle) to in situ manufacture hybrid composites having aligned ceramic filler particles. For this work, the thermoplastic poly lactic acid (PLA) was used as a polymer matrix while 10 vol% KNLN (K0.485Na0.485Li0.03NbO3) ceramic particles were chosen as a filler material. The degree of alignment of the ceramic powders depended upon print speed, printing temperature and distance between electrodes. At 210 °C and a 1 kV/mm applied electric field, printed samples showed nearly complete alignment of ceramic particles in the PLA matrix. This research shows that incorporating electric field sources into 3D printing processes would result in in situ ceramic particle alignment while preserving the other benefits of 3D printing.
Item Type: | Article |
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Uncontrolled Keywords: | additive manufacturing; in situ alignment; electrically assisted 3D printing; hybrid composites; 3D printing |
Subjects: | H300 Mechanical Engineering H600 Electronic and Electrical Engineering H800 Chemical, Process and Energy Engineering |
Department: | Faculties > Engineering and Environment > Mechanical and Construction Engineering |
Depositing User: | Elena Carlaw |
Date Deposited: | 18 Nov 2021 12:05 |
Last Modified: | 18 Nov 2021 12:15 |
URI: | http://nrl.northumbria.ac.uk/id/eprint/47777 |
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