Role of infill parameters on the mechanical performance and weight reduction of PEI Ultem processed by FFF
Author
Pérez Martínez, M. (Marco)
Gómez Gras, Giovanni
Reyes Pozo, Guillermo
Forés-Garriga, Albert
Other authors
Universitat Ramon Llull. IQS
Publication date
2020-08Abstract
In comparison with conventional manufacturing technologies, Fused Filament Fabrication (FFF) offers countless benefits. It broadens the horizons of the design of structural components with high geometrical complexity, and lighter elements can be obtained by optimizing the infill of the part. The infill density stands as a manufacturing parameter that plays a significant part in weight reduction purposes. This fact provides FFF with an outstanding competitive advantage as compared to the rest of the additive manufacturing technologies. This work aims to investigate the role of infill parameters on the mechanical performance and weight reduction of ULTEMTM 9085 samples processed by FFF, under tensile, flexural, and shear loading conditions in six different orientations with several solid and sparse configurations. Regarding the effect of the part orientation and the infill settings, the experimental results permit to draw conclusions on stiffness, resilience, maximum stress, and type of failure of the printed parts. Three-dimensional compliance matrices for each infill configuration are provided. The analysis of the results correlates the infill configuration with the mechanical performance considering the intra-layer and inter-layer unions. Finally, this research provides experimental evidence to contribute to the definition of novel design-for-manufacturing strategies for obtaining functional structural elements by FFF.
Document Type
Article
Published version
Language
English
Subject (CDU)
621 - Mechanical engineering in general. Nuclear technology. Electrical engineering. Machinery
Keywords
Fabricació
Materials--Propietats mecàniques
Additive manufacturing
Fused filament fabrication
PEI Ultem
Infill
Mechanical properties
Constitutive matrix
Pages
16 p.
Publisher
Elsevier
Is part of
Material & Design. Vol. 193 (2020), 108810
Grant agreement number
info:eu-repo/grantAgreement/MCIU/PN I+D/RTI2018-099754-A-I00
info:eu-repo/grantAgreement/ACCIÓ/Llavor/COMRDI16-1-0010
This item appears in the following Collection(s)
Rights
© L'autor/a
Except where otherwise noted, this item's license is described as http://creativecommons.org/licenses/by-nc-nd/4.0/