FDM-Based 3D Printing of Polymer and Associated Composite: A Review on Mechanical Properties, Defects and Treatments

3D-печать полимеров и соответствующих композитов на основе FDM: обзор механических свойств, дефектов и методов обработки
Phuong Tran, Sachini Wickramasinghe, Truong Do
2020-07-10

Additive manufacturing defectsFibre-reinforced compositesFused deposition modellingPost-processing treatmentsPrinting parameters
Fused deposition modelling (FDM) is one of the fastest-growing additive manufacturing methods used in printing fibre-reinforced composites (FRC). The performances of the resulting printed parts are limited compared to those by other manufacturing methods due to their inherent defects. Hence, the effort to develop treatment methods to overcome these drawbacks has accelerated during the past few years. The main focus of this study is to review the impact of those defects on the mechanical performance of FRC and therefore to discuss the available treatment methods to eliminate or minimize them in order to enhance the functional properties of the printed parts. As FRC is a combination of polymer matrix material and continuous or short reinforcing fibres, this review will thoroughly discuss both thermoplastic polymers and FRCs printed via FDM technology, including the effect of printing parameters such as layer thickness, infill pattern, raster angle and fibre orientation. The most common defects on printed parts, in particular, the void formation, surface roughness and poor bonding between fibre and matrix, are explored. An inclusive discussion on the effectiveness of chemical, laser, heat and ultrasound treatments to minimize these drawbacks is provided by this review.
1
Chemical, laser, thermal, and ultrasound treatments are evaluated as approaches to minimize defects and improve the functional properties of printed parts.
2
FDM-printed polymer and fibre-reinforced composite parts have lower performance than parts produced by other manufacturing methods because of inherent printing defects.
3
Mechanical performance is strongly influenced by printing parameters, including layer thickness, infill pattern, raster angle, and fibre orientation.
4
The principal defects reviewed are void formation, surface roughness, and weak bonding between reinforcing fibres and the polymer matrix.
5
The review covers both thermoplastic polymers and continuous- or short-fibre-reinforced composites manufactured using FDM.

FDM-printed thermoplastic polymers and fibre-reinforced composites (FRCs)

Effects of printing parameters and inherent defects on the mechanical and functional performance of FDM-printed parts, and the effectiveness of chemical, laser, heat, and ultrasound treatments for defect reduction

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2020-07-10
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Phuong Tran
Sachini Wickramasinghe
Truong Do
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