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Fiber Traction Printing: A 3D Printing Method of Continuous Fiber Reinforced Metal Matrix Composite

Xin Wang et al · KeAi Communications Co., Ltd · 2020

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Abstract A novel metal matrix composite freeform fabrication approach, fiber traction printing (FTP), is demonstrated through controlling the wetting behavior between fibers and the matrix. This process utilizes the fiber bundle to control the cross-sectional shape of the liquid metal, shaping it from circular to rectangular which is more precise. The FTP process could resolve manufacturing difficulties in the complex structure of continuous fiber reinforced metal matrix composites. The printing of the first layer monofilament is discussed in detail, and the effects of the fibrous coating thickness on the mechanical properties and microstructures of the composite are also investigated in this paper. The composite material prepared by the FTP process has a tensile strength of 235.2 MPa, which is close to that of composites fabricated by conventional processes. The complex structures are printed to demonstrate the advantages and innovations of this approach. Moreover, the FTP method is suited to other material systems with good wettability, such as modified carbon fiber, surfactants, and aluminum alloys.

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APA 7

al, X. W. E. (2020). Fiber Traction Printing: A 3D Printing Method of Continuous Fiber Reinforced Metal Matrix Composite. https://doi.org/10.1186/s10033-020-00447-1

MLA

al, Xin Wang et. "Fiber Traction Printing: A 3D Printing Method of Continuous Fiber Reinforced Metal Matrix Composite." 2020. https://doi.org/10.1186/s10033-020-00447-1.

Chicago

al, Xin Wang et. 2020. "Fiber Traction Printing: A 3D Printing Method of Continuous Fiber Reinforced Metal Matrix Composite.". https://doi.org/10.1186/s10033-020-00447-1.

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al, X. W. E. 2020, Fiber Traction Printing: A 3D Printing Method of Continuous Fiber Reinforced Metal Matrix Composite, KeAi Communications Co, Ltd, available at: https://doi.org/10.1186/s10033-020-00447-1 [Accessed 9 Aug. 2026].

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Title
Fiber Traction Printing: A 3D Printing Method of Continuous Fiber Reinforced Metal Matrix Composite
Author / contributors
Xin Wang et al
Publisher
KeAi Communications Co., Ltd
Publication year
2020
ISSN
1000-9345
ISSN
1000-9345
Language
English

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