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Mechanical and FEA-Assisted Characterization of 3D Printed Continuous Glass Fiber Reinforced Nylon Cellular Structures
- Source :
- Journal of Composites Science, Vol 5, Iss 313, p 313 (2021), Journal of Composites Science; Volume 5; Issue 12; Pages: 313
- Publication Year :
- 2021
- Publisher :
- MDPI AG, 2021.
-
Abstract
- The main objective of this study was to investigate the mechanical behavior of 3D printed fiberglass-reinforced nylon honeycomb structures. A Continuous Fiber Fabrication (CFF) 3D printer was used since it makes it possible to lay continuous strands of fibers inside the 3D printed geometries at selected locations across the width in order to optimize the bending behavior. Nylon and nylon/fiberglass honeycomb structures were tested under a three-point bending regime. The microstructure of the filaments and the 3D printed fractured surfaces following bending tests were examined with Scanning Electron Microscopy (SEM). The modulus of the materials was also evaluated using the nanoindentation technique. The behavior of the 3D printed structures was simulated with a Finite Element Model (FEM). The experimental and simulation results demonstrated that 3D printed continuous fiberglass reinforcement is possible to selectively adjust the bending strength of the honeycombs. When glass fibers are located near the top and bottom faces of honeycombs, the bending strength is maximized.
- Subjects :
- Technology
Materials science
honeycomb structures
nylon
Science
Glass fiber
Modulus
Bending
finite element analysis
Nanoindentation
additive manufacturing
continuous fiber fabrication (CFF)
glass fiber
Microstructure
Finite element method
Honeycomb structure
Flexural strength
Ceramics and Composites
Composite material
Engineering (miscellaneous)
Subjects
Details
- Language :
- English
- Volume :
- 5
- Issue :
- 313
- Database :
- OpenAIRE
- Journal :
- Journal of Composites Science
- Accession number :
- edsair.doi.dedup.....0f95e362e59b5edc75e408b91fc5f137