Research Article

A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY

Volume: 24 Number: 4 December 27, 2023
EN TR

A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY

Abstract

In this study, unlike many wing profiles currently available, a new wing design has been carried out with bio-inspiration, which has attracted the attention of many scientists. There are many traditional methods in 3d additive manufacturing technologies. There are several types of 3D printing method. The four most preferred 3d printing methods are as follows. Fused Deposition Modeling (FDM), Stereolithography (SLA), Selective Laser Sintering (SLS), Multi Jet Fusion (MJF). MJF technology, one-to-one prototype production of wings with very small dimensions and aerodynamic structure has been achieved. In contrast to FDM and other additive printing technologies, it is possible to eliminate highly sensitive and high surface quality products.

Keywords

Bio-inspired wings, 3D additive manufacturing technologies, Multi Jet Fusion (MJF) technology

References

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APA
Aydın, N. (2023). A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY. Eskişehir Technical University Journal of Science and Technology A - Applied Sciences and Engineering, 24(4), 250-256. https://doi.org/10.18038/estubtda.1269086
AMA
1.Aydın N. A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY. Estuscience - Se. 2023;24(4):250-256. doi:10.18038/estubtda.1269086
Chicago
Aydın, Neslihan. 2023. “A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY”. Eskişehir Technical University Journal of Science and Technology A - Applied Sciences and Engineering 24 (4): 250-56. https://doi.org/10.18038/estubtda.1269086.
EndNote
Aydın N (December 1, 2023) A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY. Eskişehir Technical University Journal of Science and Technology A - Applied Sciences and Engineering 24 4 250–256.
IEEE
[1]N. Aydın, “A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY”, Estuscience - Se, vol. 24, no. 4, pp. 250–256, Dec. 2023, doi: 10.18038/estubtda.1269086.
ISNAD
Aydın, Neslihan. “A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY”. Eskişehir Technical University Journal of Science and Technology A - Applied Sciences and Engineering 24/4 (December 1, 2023): 250-256. https://doi.org/10.18038/estubtda.1269086.
JAMA
1.Aydın N. A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY. Estuscience - Se. 2023;24:250–256.
MLA
Aydın, Neslihan. “A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY”. Eskişehir Technical University Journal of Science and Technology A - Applied Sciences and Engineering, vol. 24, no. 4, Dec. 2023, pp. 250-6, doi:10.18038/estubtda.1269086.
Vancouver
1.Neslihan Aydın. A NEW BIO-INSPIRED WING DESIGN WITH 3D ADDITIVE MANUFACTURING SCANNING AND PRINTING METHOD: MJF TECHNOLOGY. Estuscience - Se. 2023 Dec. 1;24(4):250-6. doi:10.18038/estubtda.1269086