A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of PET-G

This experimental study investigated the influence of FDM 3D printing parameters on the tensile behavior of PET-G-made parts. In this context, 27 test specimens were produced using FDM on the Anycubic 4 Max Pro 2.0 printer with layer heights applied in one pass Lh = 0.10/0.15/0.20 mm and filling per...

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Main Authors: Dragos Gabriel Zisopol, Mihail Minescu, Dragos Valentin Iacob
Format: Article
Language:English
Published: D. G. Pylarinos 2024-04-01
Series:Engineering, Technology & Applied Science Research
Subjects:
Online Access:https://etasr.com/index.php/ETASR/article/view/6949
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author Dragos Gabriel Zisopol
Mihail Minescu
Dragos Valentin Iacob
author_facet Dragos Gabriel Zisopol
Mihail Minescu
Dragos Valentin Iacob
author_sort Dragos Gabriel Zisopol
collection DOAJ
description This experimental study investigated the influence of FDM 3D printing parameters on the tensile behavior of PET-G-made parts. In this context, 27 test specimens were produced using FDM on the Anycubic 4 Max Pro 2.0 printer with layer heights applied in one pass Lh = 0.10/0.15/0.20 mm and filling percentages Id = 50/75/100 %. All these samples were tensile tested on the Barrus White 20 kN universal testing machine. The experimental results determined maximum tensile strength, elongation percentage at break, and Young's modulus. The two parameters considered, Id and Lh, influence the maximum tensile strength, the elongation percentage at break, and Young's modulus. The findings demonstrated that the filling percentage has a strong influence on the maximum tensile strength and the elongation percentage at the break of the PET-G samples, and Lh has a decisive influence on Young's modulus.
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spelling doaj.art-39d2100bff3c4a6c8a90252561b15a112024-04-03T06:14:08ZengD. G. PylarinosEngineering, Technology & Applied Science Research2241-44871792-80362024-04-0114210.48084/etasr.6949A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of PET-GDragos Gabriel Zisopol0Mihail Minescu1Dragos Valentin Iacob2Mechanical Engineering Department, Petroleum-Gas University Ploiesti, RomaniaMechanical Engineering Department, Petroleum-Gas University Ploiesti, RomaniaProduction Department, Marelli Ploiesti, RomaniaThis experimental study investigated the influence of FDM 3D printing parameters on the tensile behavior of PET-G-made parts. In this context, 27 test specimens were produced using FDM on the Anycubic 4 Max Pro 2.0 printer with layer heights applied in one pass Lh = 0.10/0.15/0.20 mm and filling percentages Id = 50/75/100 %. All these samples were tensile tested on the Barrus White 20 kN universal testing machine. The experimental results determined maximum tensile strength, elongation percentage at break, and Young's modulus. The two parameters considered, Id and Lh, influence the maximum tensile strength, the elongation percentage at break, and Young's modulus. The findings demonstrated that the filling percentage has a strong influence on the maximum tensile strength and the elongation percentage at the break of the PET-G samples, and Lh has a decisive influence on Young's modulus. https://etasr.com/index.php/ETASR/article/view/6949FDM parametersPET-Gtensile strengthpercent elongationmodulus of elasticity
spellingShingle Dragos Gabriel Zisopol
Mihail Minescu
Dragos Valentin Iacob
A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of PET-G
Engineering, Technology & Applied Science Research
FDM parameters
PET-G
tensile strength
percent elongation
modulus of elasticity
title A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of PET-G
title_full A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of PET-G
title_fullStr A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of PET-G
title_full_unstemmed A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of PET-G
title_short A Study on the Influence of FDM Parameters on the Tensile Behavior of Samples made of PET-G
title_sort study on the influence of fdm parameters on the tensile behavior of samples made of pet g
topic FDM parameters
PET-G
tensile strength
percent elongation
modulus of elasticity
url https://etasr.com/index.php/ETASR/article/view/6949
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