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3D-printed broadband electromagnetic wave-absorbing basalt/CF/PLA composites with a high current path for lightning strike protection

Authors
Noh, Ji-SubHong, So-MangHoang, Van-ThoKwak, Byeong-SuNam, Young-Woo
Issue Date
Dec-2024
Publisher
SAGE Publications
Keywords
Radar-absorbing composite; 3D-printing; thermoplastic resin; lightning strike protection; coupled electrical-thermal analysis
Citation
Journal of Composite Materials, v.58, no.29, pp 3029 - 3043
Pages
15
Indexed
SCIE
SCOPUS
Journal Title
Journal of Composite Materials
Volume
58
Number
29
Start Page
3029
End Page
3043
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/74431
DOI
10.1177/00219983241289491
ISSN
0021-9983
1530-793X
Abstract
In this study, we used the three-dimensional (3D) printing method to design and fabricate a radar-absorbing structure (RAS) to protect against damage caused by lightning strikes. A carbon black-dispersed 3D filament was used as reinforcement in the composite, and metalized fibers served as the feedstock for 3D-printing. The return losses measured in the X-band and Ku-band (8.2-18 GHz) indicated a maximum return loss of -28.98 dB at 10.68 GHz, with a broad bandwidth of 6.56 GHz in the frequency range of 8.2-18 GHz. A coupled electrical-thermal analysis confirmed that the proposed carbon black-dispersed filament provided conductive paths, which contributed to direct current, energy dissipation, and lightning strike protection. The 3D-printing method ensured a sufficient level of electrical conductivity, limiting the area and depth of damage caused by lightning strikes. Therefore, 3D-printed-RASs, reinforced by electrically conductive materials, can effectively protect against lightning strikes.
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공학계열 > 기계항공우주공학부 > Journal Articles

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