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Line width prediction and mechanical properties of 3D printed continuous fiber reinforced polypropylene composites
A novel 3D printing process was used to fabricate continuous carbon fiber-reinforced polypropylene (CCF/PP) composites. In this study, a prediction model for the line width of 3D printed CCF/PP composites was developed based on the material conservation principle. According to this model, the corres...
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Published in: | Additive manufacturing 2023-01, Vol.61, p.103372, Article 103372 |
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Main Authors: | , , , , , , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | A novel 3D printing process was used to fabricate continuous carbon fiber-reinforced polypropylene (CCF/PP) composites. In this study, a prediction model for the line width of 3D printed CCF/PP composites was developed based on the material conservation principle. According to this model, the correspondence rule between the process parameters and the fiber volume fraction of the sample was established. The accuracy of the prediction model was verified by monofilament printing experiments, and the maximum error of line width was 9.72%. Furthermore, the effects of process parameters on the flexural properties, tensile properties and interlaminar shear strength (ILSS) of 3D printed CCF/PP composites were investigated. The flexural strength of the sample reached 99.94 MPa and the flexural modulus reached 14.91 GPa. The maximum ILSS of the sample was 9.78 MPa, and the maximum tensile strength and modulus were 402.86 MPa and 43.64 GPa. The advantages of this process in terms of low manufacturing cost and trajectory flexibility could make it a good prospect for its application.
•A line width prediction model for 3D printed CCF/PP composites was developed.•The accuracy of the model was verified by single filament printing experiments.•The microstructure of the composite filament under optical microscope was analyzed.•The effect of process parameters on mechanical properties was systematically investigated. |
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ISSN: | 2214-8604 2214-7810 |
DOI: | 10.1016/j.addma.2022.103372 |