LAPSE:2023.0944
Published Article
LAPSE:2023.0944
3D Printing of PLA/Magnetic Ferrite Composites: Effect of Filler Particles on Magnetic Properties of Filament
Abdulkarim Amirov, Alexander Omelyanchik, Dmitry Murzin, Valeria Kolesnikova, Stanislav Vorontsov, Ismel Musov, Khasan Musov, Svetlana Khashirova, Valeria Rodionova
February 21, 2023
Abstract
Three-dimensional printing is one of the most promising areas of additive manufacturing with a constantly growing range of applications. One of the current tasks is the development of new functional materials that would allow the manufacture of objects with defined magnetic, electrical, and other properties. In this work, composite magnetic filaments for 3D printing with tunable magnetic properties were produced from polylactic acid thermoplastic polymer with the addition of magnetic ferrite particles of different size and chemical composition. The used magnetic particles were cobalt ferrite CoFe2O4 nanoparticles, a mixture of CoFe2O4 and zinc-substituted cobalt ferrite Zn0.3Co0.7Fe2O4 nanoparticles (~20 nm), and barium hexaferrite BaFe12O19 microparticles (<40 µm). The maximum coercivity field HC = 1.6 ± 0.1 kOe was found for the filament sample with the inclusion of 5 wt.% barium hexaferrite microparticles, and the minimum HC was for a filament with a mixture of cobalt and zinc−cobalt spinel ferrites. Capabilities of the FDM 3D printing method to produce parts having simple (ring) and complex geometric shapes (honeycomb structures) with the magnetic composite filament were demonstrated.
Keywords
additive technologies, extrusion, FDM printing, filament, hexaferrites, magnetic composites, magnetic nanoparticles, polymer composites, spinel ferrites
Subject
Suggested Citation
Amirov A, Omelyanchik A, Murzin D, Kolesnikova V, Vorontsov S, Musov I, Musov K, Khashirova S, Rodionova V. 3D Printing of PLA/Magnetic Ferrite Composites: Effect of Filler Particles on Magnetic Properties of Filament. (2023). LAPSE:2023.0944
Author Affiliations
Amirov A: Research and Education Center “Smart Materials and Biomedical Applications”, Immanuel Kant Baltic Federal University, 236014 Kaliningrad, Russia [ORCID]
Omelyanchik A: Research and Education Center “Smart Materials and Biomedical Applications”, Immanuel Kant Baltic Federal University, 236014 Kaliningrad, Russia [ORCID]
Murzin D: Research and Education Center “Smart Materials and Biomedical Applications”, Immanuel Kant Baltic Federal University, 236014 Kaliningrad, Russia [ORCID]
Kolesnikova V: Research and Education Center “Smart Materials and Biomedical Applications”, Immanuel Kant Baltic Federal University, 236014 Kaliningrad, Russia [ORCID]
Vorontsov S: Research and Education Center “Smart Materials and Biomedical Applications”, Immanuel Kant Baltic Federal University, 236014 Kaliningrad, Russia
Musov I: Progressive Materials and Additive Technologies Center, Kabardino-Balkarian State University Named after H.M. Berbekov, 360004 Nalchik, Russia
Musov K: Progressive Materials and Additive Technologies Center, Kabardino-Balkarian State University Named after H.M. Berbekov, 360004 Nalchik, Russia
Khashirova S: Progressive Materials and Additive Technologies Center, Kabardino-Balkarian State University Named after H.M. Berbekov, 360004 Nalchik, Russia
Rodionova V: Research and Education Center “Smart Materials and Biomedical Applications”, Immanuel Kant Baltic Federal University, 236014 Kaliningrad, Russia [ORCID]
Journal Name
Processes
Volume
10
Issue
11
First Page
2412
Year
2022
Publication Date
2022-11-16
ISSN
2227-9717
Version Comments
Original Submission
Other Meta
PII: pr10112412, Publication Type: Journal Article
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LAPSE:2023.0944
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https://doi.org/10.3390/pr10112412
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Feb 21, 2023
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