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Investigation of scarf-patch-repaired radar-absorbing composite using circuit-analog absorbers subjected to low-velocity impact loads

Authors
Noh, Ji-SubNoh, Yeong-DeokHa, Ji-HwanNam, Young-WooKwak, Byeong-Su
Issue Date
Jun-2024
Publisher
SAGE Publications
Keywords
Circuit-analog absorber; low-velocity impact; multifunctional composite; radar-absorbing composite; scarf-patch repair
Citation
Journal of Reinforced Plastics and Composites, v.44, no.23-24, pp 2588 - 2598
Pages
11
Indexed
SCIE
SCOPUS
Journal Title
Journal of Reinforced Plastics and Composites
Volume
44
Number
23-24
Start Page
2588
End Page
2598
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/70876
DOI
10.1177/07316844241260326
ISSN
0731-6844
1530-7964
Abstract
This study quantitatively evaluated the changes in the electromagnetic-wave-absorption performance of a circuit-analog (CA) absorber based on the applied impact energy. An electromagnetic simulation was employed to design a CA absorber with superior absorption efficacy within the X-band (8.2-12.4 GHz) spectrum. Based on this design, a CA absorber was fabricated using glass-fiber-reinforced plastic and a periodic pattern sheet (PPS). The damage to the CA absorbers was simulated through low-velocity impact tests at various energies, and their electromagnetic-wave-absorption degradation was quantified via return loss measurements. A scarf-patch repair method for the CA absorber was developed and applied to repair damaged absorber with the aim of reinstating their absorption performance, which was deteriorated by damage. Absorption performance evaluations of the repaired absorber confirmed that the proposed repair method can substantially restore the absorption performance. Additionally, simulations of the proposed repair method were used to enhance the understanding of the effects of the pattern mismatch and use of external ply within the PPS at the boundary line, which influence the effectiveness of the repair process.
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Kwak, Byeong Su
대학원 (기계항공우주공학부)
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