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Journal of Manufacturing and Materials Processing, volume 8, issue 1, pages 25

Processing and Analysis of Hybrid Fiber-Reinforced Polyamide Composite Structures Made by Fused Granular Fabrication and Automated Tape Laying

Patrick Hirsch 1
Simon Scholz 1
Benjamin Borowitza 1
Moritz Vyhnal 1
Ralf Schlimper 1
Matthias Zscheyge 1
Ondrej Kotera 2
Michaela Stipkova 2
Sebastian Scholz 2
1
 
Fraunhofer Institute for Microstructure of Materials and Systems IMWS, Walter-Hülse-Straße 1, 06120 Halle (Saale), Germany
Publication typeJournal Article
Publication date2024-02-01
Quartile SCImago
Q1
Quartile WOS
Impact factor3
ISSN25044494
Mechanical Engineering
Industrial and Manufacturing Engineering
Mechanics of Materials
Abstract

Fused granular fabrication (FGF) is a large format additive manufacturing (LFAM) technology and focuses on cost-effective granulate-based manufacturing by eliminating the need for semifinished filaments. This allows a faster production time and a broader range of usable materials for tailored composites. In this study, the mechanical and morphological properties of FGF test structures made of polyamid 6 reinforced with 40% of short carbon fibers were investigated. For this purpose, FGF test structures with three different parameter settings were produced. The FGF printed structures show generally significant anisotropic mechanical characteristics, caused by the layer-by-layer building process. To enhance the mechanical properties and reduce the anisotropic behavior of FGF structures, continuous unidirectional fiber-reinforced tapes (UD tapes), employing automated tape laying (ATL), were subsequently applied. Thus, a significant improvement in the flexural stiffness and strength of the manufactured FGF structures was observed by hybridization with 60% glass fiber-reinforced polyamide 6 UD tapes. Since the effectiveness of UD-tape reinforcement depends mainly on the quality of the bond between the UD tape and the FGF structure, the surface quality of the FGF structure, the interface morphology, and the tape-laying process parameters were investigated.

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Hirsch P. et al. Processing and Analysis of Hybrid Fiber-Reinforced Polyamide Composite Structures Made by Fused Granular Fabrication and Automated Tape Laying // Journal of Manufacturing and Materials Processing. 2024. Vol. 8. No. 1. p. 25.
GOST all authors (up to 50) Copy
Hirsch P., Scholz S., Borowitza B., Vyhnal M., Schlimper R., Zscheyge M., Kotera O., Stipkova M., Scholz S. Processing and Analysis of Hybrid Fiber-Reinforced Polyamide Composite Structures Made by Fused Granular Fabrication and Automated Tape Laying // Journal of Manufacturing and Materials Processing. 2024. Vol. 8. No. 1. p. 25.
RIS |
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RIS Copy
TY - JOUR
DO - 10.3390/jmmp8010025
UR - https://doi.org/10.3390/jmmp8010025
TI - Processing and Analysis of Hybrid Fiber-Reinforced Polyamide Composite Structures Made by Fused Granular Fabrication and Automated Tape Laying
T2 - Journal of Manufacturing and Materials Processing
AU - Hirsch, Patrick
AU - Scholz, Simon
AU - Borowitza, Benjamin
AU - Vyhnal, Moritz
AU - Schlimper, Ralf
AU - Zscheyge, Matthias
AU - Kotera, Ondrej
AU - Stipkova, Michaela
AU - Scholz, Sebastian
PY - 2024
DA - 2024/02/01
PB - MDPI
SP - 25
IS - 1
VL - 8
SN - 2504-4494
ER -
BibTex |
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BibTex Copy
@article{2024_Hirsch,
author = {Patrick Hirsch and Simon Scholz and Benjamin Borowitza and Moritz Vyhnal and Ralf Schlimper and Matthias Zscheyge and Ondrej Kotera and Michaela Stipkova and Sebastian Scholz},
title = {Processing and Analysis of Hybrid Fiber-Reinforced Polyamide Composite Structures Made by Fused Granular Fabrication and Automated Tape Laying},
journal = {Journal of Manufacturing and Materials Processing},
year = {2024},
volume = {8},
publisher = {MDPI},
month = {feb},
url = {https://doi.org/10.3390/jmmp8010025},
number = {1},
pages = {25},
doi = {10.3390/jmmp8010025}
}
MLA
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MLA Copy
Hirsch, Patrick, et al. “Processing and Analysis of Hybrid Fiber-Reinforced Polyamide Composite Structures Made by Fused Granular Fabrication and Automated Tape Laying.” Journal of Manufacturing and Materials Processing, vol. 8, no. 1, Feb. 2024, p. 25. https://doi.org/10.3390/jmmp8010025.
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