Sustainability in additive manufacturing: Exploring the mechanical potential of recycled PET filaments
Устойчивое развитие в аддитивном производстве: исследование механического потенциала филаментов из переработанного ПЭТ
2021-01-01
SCID: 54.1/x7jhv6yz
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PETGadditive manufacturingfused deposition modellingmechanical propertiesrecycled PET filament
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Abstract (AI)
Herein, the effects of recycled polymers on the mechanical properties of additively manufactured specimens, specifically those derived by fused deposition modelling, are determined. The intention is to investigate how 3D-printing can be more sustainable and how recycled polymers compare against conventional ones. Initially, sustainability is discussed in general and more sustainable materials such as recycled filaments and biodegradable filaments are introduced. Subsequently, a comparison of the recycled filament recycled Polyethylene terephthalate (rePET) and a conventional Polyethylene terephthalate with glycol (PETG) filament is drawn upon their mechanical performance under tension, and the geometry and slicing strategy for the 3D-printed specimens is discussed. Finally, the outcomes from the experiments are compared against numerically determined results and conclusions are drawn.
Key Findings
1
Experimental mechanical results are compared with numerical predictions to evaluate their agreement.
2
Recycled PET (rePET) filament is mechanically compared with conventional PETG filament under tensile loading.
3
Specimen geometry and slicing strategy are identified as relevant factors in assessing the mechanical performance of 3D-printed samples.
4
The study evaluates how recycled polymers affect the mechanical properties of fused-deposition-modelled specimens.
5
The work investigates recycled filaments as a pathway toward more sustainable additive manufacturing.
Research Object
additively manufactured specimens made from recycled PET (rePET) and conventional PETG filaments using fused deposition modelling
Research Subject
comparative tensile mechanical performance of rePET and PETG specimens, including agreement between experimental and numerical results
Publication Details
Publication Date
2021-01-01
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