Product Design by Additive Manufacturing for Water Environments: Study of Degradation and Absorption Behavior of PLA and PETG
Проектирование изделий методом аддитивного производства для водной среды: исследование процессов деградации и водопоглощения PLA и PETG
2021-03-26
SCID: 54.1/385zd5rh
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PLA and PETGadditive manufacturingfused filament fabricationpolymer degradationwater absorption
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Abstract (AI)
Additive manufacturing technologies are shifting from rapid prototyping technologies to end use or final parts production. Polymeric material extrusion processes have been broadly addressed with a specific definition of all parameters and variables for all different of technologies approaches and materials. Recycled polymeric materials have been studied due to the growing importance of the environmental awareness of the contemporary society. Beside this, little specific research has been found in product development applications for AM where the printed parts are in highly moisture environments or surrounded by water, but polymers have been for long used in such industries with conventional manufacturing approaches. This work focuses on the analysis and comparison of two different additively manufactured polymers printed by fused filament fabrication (FFF) processes using desktop-size printers to be applied for product design. The polymers used have been a recycled material: polyethylene terephthalate glycol (PETG) and polylactic acid (PLA). Degradation and water absorption behaviors of both materials are presented, analyzed and discussed in this paper, where different samples have been immersed in saturated solutions of water with maritime salt and sugar together with a control sample immersed in distilled water. The samples have been dimensionally and weight-controlled weekly as well as microscopically analyzed to understand degradation and absorption processes that appear in the fully saturated solutions. The results revealed how the absorption process is stabilized after a reduced number of weeks for both materials and how the degradation process is more remarked in the PLA material due to its organic nature.
Key Findings
1
PLA exhibited more pronounced degradation than PETG, attributed to PLA’s organic nature.
2
Samples were immersed in distilled water and saturated maritime-salt and sugar solutions, with weekly dimensional, weight, and microscopic assessments.
3
The results provide material-selection evidence for additively manufactured products exposed to water or moisture.
4
The study compares water absorption and degradation of FFF-printed recycled PLA and PETG intended for product applications in highly moist or submerged environments.
5
Water absorption stabilized after a relatively small number of weeks for both PLA and PETG materials.
Research Object
Additively manufactured PLA and PETG polymer samples immersed in distilled water and saturated maritime salt and sugar solutions
Research Subject
Degradation and water-absorption behavior of PLA and PETG under prolonged immersion, including dimensional, weight, and microscopic changes
Publication Details
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2021-03-26
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