Impact of support structure on surface roughness and mechanical properties of PLA 3D printed parts by FDM

This study investigates the effect of support infill angle and its density, transverse at 90°, inclined at 45°, axial direction at 0° and crossed filament by (0°/90°), (45°/-45°) and (0°/45°) on surface quality and mechanical properties using three different strategies. The surface roughnes...

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Main Authors: Intissar Antar, Khalid Zarbane, Mohamed El Oumami, Zitouni Beidouri
Format: Article
Language:English
Published: ISTE Group 2024-01-01
Series:Incertitudes et Fiabilité des Systèmes Multiphysiques
Online Access:https://www.openscience.fr/Impact-of-support-structure-on-surface-roughness-and-mechanical-properties-of
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author Intissar Antar
Khalid Zarbane
Mohamed El Oumami
Zitouni Beidouri
author_facet Intissar Antar
Khalid Zarbane
Mohamed El Oumami
Zitouni Beidouri
author_sort Intissar Antar
collection DOAJ
description This study investigates the effect of support infill angle and its density, transverse at 90°, inclined at 45°, axial direction at 0° and crossed filament by (0°/90°), (45°/-45°) and (0°/45°) on surface quality and mechanical properties using three different strategies. The surface roughness and flexural properties of the specimens are analysed and compared as well as the material waste and printing time. According to results of this study, the variations in the support infill angle resulted in diverse flexural strength and surface quality.
format Article
id doaj-art-b3f4eff014c34dbd827a03b071fe955f
institution OA Journals
issn 2514-569X
language English
publishDate 2024-01-01
publisher ISTE Group
record_format Article
series Incertitudes et Fiabilité des Systèmes Multiphysiques
spelling doaj-art-b3f4eff014c34dbd827a03b071fe955f2025-08-20T02:32:44ZengISTE GroupIncertitudes et Fiabilité des Systèmes Multiphysiques2514-569X2024-01-01821710.21494/ISTE.OP.2024.1225Impact of support structure on surface roughness and mechanical properties of PLA 3D printed parts by FDMIntissar AntarKhalid ZarbaneMohamed El OumamiZitouni Beidouri This study investigates the effect of support infill angle and its density, transverse at 90°, inclined at 45°, axial direction at 0° and crossed filament by (0°/90°), (45°/-45°) and (0°/45°) on surface quality and mechanical properties using three different strategies. The surface roughness and flexural properties of the specimens are analysed and compared as well as the material waste and printing time. According to results of this study, the variations in the support infill angle resulted in diverse flexural strength and surface quality.https://www.openscience.fr/Impact-of-support-structure-on-surface-roughness-and-mechanical-properties-of
spellingShingle Intissar Antar
Khalid Zarbane
Mohamed El Oumami
Zitouni Beidouri
Impact of support structure on surface roughness and mechanical properties of PLA 3D printed parts by FDM
Incertitudes et Fiabilité des Systèmes Multiphysiques
title Impact of support structure on surface roughness and mechanical properties of PLA 3D printed parts by FDM
title_full Impact of support structure on surface roughness and mechanical properties of PLA 3D printed parts by FDM
title_fullStr Impact of support structure on surface roughness and mechanical properties of PLA 3D printed parts by FDM
title_full_unstemmed Impact of support structure on surface roughness and mechanical properties of PLA 3D printed parts by FDM
title_short Impact of support structure on surface roughness and mechanical properties of PLA 3D printed parts by FDM
title_sort impact of support structure on surface roughness and mechanical properties of pla 3d printed parts by fdm
url https://www.openscience.fr/Impact-of-support-structure-on-surface-roughness-and-mechanical-properties-of
work_keys_str_mv AT intissarantar impactofsupportstructureonsurfaceroughnessandmechanicalpropertiesofpla3dprintedpartsbyfdm
AT khalidzarbane impactofsupportstructureonsurfaceroughnessandmechanicalpropertiesofpla3dprintedpartsbyfdm
AT mohamedeloumami impactofsupportstructureonsurfaceroughnessandmechanicalpropertiesofpla3dprintedpartsbyfdm
AT zitounibeidouri impactofsupportstructureonsurfaceroughnessandmechanicalpropertiesofpla3dprintedpartsbyfdm