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Communication

Fabrication of High-Performance CNT Reinforced Polymer Composite for Additive Manufacturing by Phase Inversion Technique

Department of Engineering, University of Campania “Luigi Vanvitelli”, Via Roma 29, 81031 Aversa, Italy
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Author to whom correspondence should be addressed.
Polymers 2021, 13(22), 4007; https://doi.org/10.3390/polym13224007
Submission received: 4 November 2021 / Revised: 15 November 2021 / Accepted: 16 November 2021 / Published: 19 November 2021
(This article belongs to the Special Issue Times of Polymers (TOP) and Composites)

Abstract

Additive Manufacturing (AM) of polymer composites has enabled the fabrication of highly customized parts with notably mechanical properties, thermal and electrical conductivity compared to un-reinforced polymers. Employing the reinforcements was a key factor in improving the properties of polymers after being 3D printed. However, almost all the existing 3D printing methods could make the most of disparate fiber reinforcement techniques, the fused filament fabrication (FFF) method is reviewed in this study to better understand its flexibility to employ for the proposed novel method. Carbon nanotubes (CNTs) as a desirable reinforcement have a great potential to improve the mechanical, thermal, and electrical properties of 3D printed polymers. Several functionalization approaches for the preparation of CNT reinforced composites are discussed in this study. However, due to the non-uniform distribution and direction of reinforcements, the properties of the resulted specimen do not change as theoretically expected. Based on the phase inversion method, this paper proposes a novel technique to produce CNT-reinforced filaments to simultaneously increase the mechanical, thermal, and electrical properties. A homogeneous CNT dispersion in a dilute polymer solution is first obtained by sonication techniques. Then, the CNT/polymer filaments with the desired CNT content can be obtained by extracting the polymer’s solvent. Furthermore, optimizing the filament draw ratio can result in a reasonable CNT orientation along the filament stretching direction.
Keywords: Additive Manufacturing; nanocomposite; high-performance polymer; Carbon nanotubes; mechanical properties; thermal properties Additive Manufacturing; nanocomposite; high-performance polymer; Carbon nanotubes; mechanical properties; thermal properties

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MDPI and ACS Style

Parnian, P.; D’Amore, A. Fabrication of High-Performance CNT Reinforced Polymer Composite for Additive Manufacturing by Phase Inversion Technique. Polymers 2021, 13, 4007. https://doi.org/10.3390/polym13224007

AMA Style

Parnian P, D’Amore A. Fabrication of High-Performance CNT Reinforced Polymer Composite for Additive Manufacturing by Phase Inversion Technique. Polymers. 2021; 13(22):4007. https://doi.org/10.3390/polym13224007

Chicago/Turabian Style

Parnian, Pooyan, and Alberto D’Amore. 2021. "Fabrication of High-Performance CNT Reinforced Polymer Composite for Additive Manufacturing by Phase Inversion Technique" Polymers 13, no. 22: 4007. https://doi.org/10.3390/polym13224007

APA Style

Parnian, P., & D’Amore, A. (2021). Fabrication of High-Performance CNT Reinforced Polymer Composite for Additive Manufacturing by Phase Inversion Technique. Polymers, 13(22), 4007. https://doi.org/10.3390/polym13224007

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