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Advances in hybrid fibers reinforced polymer-based composites prepared by FDM: A review on mechanical properties and prospects

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COMPOSITES COMMUNICATIONS
卷 40, 期 -, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.coco.2023.101592

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Additive manufacturing; Hybrid fibers; Mechanical behaviors; Polymer-based composite

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Recently published research indicates that single fiber reinforcements in additive manufacturing can increase some mechanical properties of composites, but also decrease others, limiting their industrial application. As a result, researchers have turned their attention to 3D printed hybrid composites made from combinations of different fiber types, which offer improved overall performance and tailored mechanical behaviors. This paper provides a review of the state-of-the-art 3D printed hybrid composites, discussing their mechanical behaviors, application limitations, potential improvements, and future perspectives. The review begins with an examination of different existing hybrid composite printing methods, followed by a discussion of the mechanical performance, deformation, and failure behaviors of these composites. Finally, the paper explores the limitations of printed hybrid composites and looks forward to advancements in hybrid composites with improved performance.
Recently published research indicated that, in additive manufacturing fields, single fiber reinforcements often increased some mechanical properties of composites, but at the same time decreased other mechanical behaviors, leading to a limited application of single fiber filled composites in the industry. Therefore, 3D printed hybrid composites made from a combination of short/short fibers, short/continuous fibers, or continuous/continuous fibers have received significant attention from researchers, owing to the comprehensive performance improve-ments and tailored mechanical behaviors. This paper reviewed the state-of-the-art 3D printed hybrid composites and elaborated on their mechanical behaviors, application limitations, potential improvements and future per-spectives. The review started with a detailed discussion of different existing hybrid composite printing methods. Then, the mechanical performance, deformation and failure behaviors of hybrid composites were discussed. Finally, this review explored the limitations of printed hybrid composites and looked forward to printing hybrid composite with improved performance.

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