Manufacturing of a PET Filament from Recycled Material for Material Extrusion (MEX)
Производство нити из переработанного ПЭТ для экструзии материала (MEX)
2022-09-20
SCID: 54.1/vkvtm4w3
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PET filament manufacturingadditive manufacturingmaterial extrusion (MEX)recycled polyethylene terephthalate (PET)rheological characterization
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Abstract (AI)
Due to its low cost and easy use, the use of material extrusion (MEX) as an additive manufacturing (AM) technology has increased rapidly in recent years. However, this process mainly involves the processing of new plastics. Combining the MEX process with polyethylene terephthalate (PET), which offers a high potential for mechanical and chemical recyclability, opens up a broad spectrum of reutilization possibilities. Turning used PET bottles into printable filament for MEX is not only a recycling option, but also an attractive upcycling scenario that can lead to the production of complex, functional parts. This work analyzes the process of extruding recycled PET bottle flakes into a filament, taking different extrusion screws and extrusion parameters into account. The filament is subsequently processed with MEX into tensile tests. An accompanying thermal, rheological and mechanical characterization of the recycled resin is performed to offer a comparison to the virgin material and a commercially available glycol modified polyethylene terephthalate (PETG) filament. The results show the importance of adequate drying parameters prior to the extrusion and the sensitivity of the material to moisture, leading to degradation. The recycled material is more prone to degradation and presents lower viscosities. Mechanical tests display a higher tensile strength of the recycled and virgin resin in comparison to the PETG. The extrusion of the used PET into a filament and the subsequent printing with the MEX process offers a viable recycling process for the discarded material.
Key Findings
1
Adequate pre-drying is essential because recycled PET is highly moisture-sensitive and undergoes degradation during processing.
2
Recycled PET exhibits greater degradation susceptibility and lower viscosity than virgin PET and commercially available PETG filament.
3
Tensile testing shows that recycled and virgin PET resins achieve higher tensile strength than PETG.
4
The combined PET-flake extrusion and MEX-printing route provides a viable recycling and upcycling pathway for discarded PET material.
5
The study demonstrates that discarded PET bottles can be extruded into filament and successfully processed using material extrusion (MEX).
Research Object
recycled polyethylene terephthalate (PET) bottle flakes and the filament produced from them for material extrusion (MEX)
Research Subject
the effects of extrusion screws, processing parameters, drying, and moisture on filament production, degradation, rheological behavior, thermal properties, and mechanical performance compared with virgin PET and PETG
Publication Details
Publication Date
2022-09-20
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