3D printing of layered ceramic/carbon fiber composite with improved toughness

Strong and tough ceramic materials are required for many structural applications, however, these properties tend to be mutually exclusive in many man-made ceramic materials. Inspired by composition of biological materials such as nacre, this work offers a simple and versatile 3D printing approach ba...

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Veröffentlicht in:Additive manufacturing 2022-02, Vol.50, p.102543, Article 102543
Hauptverfasser: Sun, Jinxing, Yu, Shixiang, Wade-Zhu, James, Chen, Xiaoteng, Binner, Jon, Bai, Jiaming
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Sprache:eng
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Zusammenfassung:Strong and tough ceramic materials are required for many structural applications, however, these properties tend to be mutually exclusive in many man-made ceramic materials. Inspired by composition of biological materials such as nacre, this work offers a simple and versatile 3D printing approach based on the concept of layered ceramics to overcome such limitations, obtaining both high strength and toughness. The resulting layered ceramic/carbon fiber reinforced polymer composites exhibit an excellent combination of high strength, fracture toughness and work of fracture. Such fracture-resistant behavior can be attributed to the toughening mechanisms of crack deflection, lamellae and fiber ‘pull-out’, polymer inelastic deformation, and interfacial debonding. This strategy enables the fabrication of layered ceramic/polymer composites with remarkable properties, thus demonstrating its potential applicability to fabricating other layered composites.
ISSN:2214-8604
2214-7810
DOI:10.1016/j.addma.2021.102543