Publication | Open Access
Mechanical Properties Optimization of Poly-Ether-Ether-Ketone via Fused Deposition Modeling
255
Citations
13
References
2018
Year
Materials ScienceLayer ThicknessFdm SystemEngineeringMicrofabricationMechanical EngineeringPolymer ScienceFabrication TechniquePolymer ProcessingPolymer EngineeringMechanical Properties OptimizationPolymer CharacterizationMechanical PerformanceBiomedical EngineeringManufacturing EngineeringDeposition Modeling3D Bioprinting3D Printing
Compared to the common selective laser sintering (SLS) manufacturing method, fused deposition modeling (FDM) seems to be an economical and efficient three-dimensional (3D) printing method for high temperature polymer materials in medical applications. In this work, a customized FDM system was developed for polyether-ether-ketone (PEEK) materials printing. The effects of printing speed, layer thickness, printing temperature and filling ratio on tensile properties were analyzed by the orthogonal test of four factors and three levels. Optimal tensile properties of the PEEK specimens were observed at a printing speed of 60 mm/s, layer thickness of 0.2 mm, temperature of 370 °C and filling ratio of 40%. Furthermore, the impact and bending tests were conducted under optimized conditions and the results demonstrated that the printed PEEK specimens have appropriate mechanical properties.
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