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X-Band 영역에서의 세라믹/샌더스트-알루미노실리케이트 복합재의 초고온 전자파 흡수 거동Ultra-high Temperature EM Wave Absorption Behavior for Ceramic/Sendust-aluminosilicate Composite in X-band

Other Titles
Ultra-high Temperature EM Wave Absorption Behavior for Ceramic/Sendust-aluminosilicate Composite in X-band
Authors
Choi, Kwang-SikSim, DongyoungChoi, WonwooShin, Joon-HyungNam, Young-Woo
Issue Date
Jun-2022
Publisher
한국복합재료학회
Keywords
Ultra-high temperature condition; Radar-absorbing structure; Ceramicfiber; Aluminosilicate ceramic matrix; Sendust magnetic particle
Citation
Composites Research, v.35, no.3, pp 201 - 215
Pages
15
Indexed
ESCI
KCI
Journal Title
Composites Research
Volume
35
Number
3
Start Page
201
End Page
215
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/1242
DOI
10.7234/composres.2022.35.3.201
ISSN
2288-2103
2288-2111
Abstract
This paper presents the development of thin and lightweight ultra-high temperature radar-absorbing ceramic composites composed of an aluminosilicate ceramic matrix-based geopolymer reinforced ceramic fiber and sendust magnetic nanoparticles in X-band frequency range (8.2 similar to 12.4 GHz). The dielectric properties with regard to complex permittivity of ceramic/sendust-aluminosilicate composites were proportional to the size of sendust magnetic nanoparticle with high magnetic characteristic properties as flake shape and its concentrations in the target frequency range. The characteristic microstructures, element composition, phase identification, and thermal stability were examined by SEM, EDS, VSM and TGA, respectively. The fabricated total thicknesses of the proposed single slab ultra-high temperature radar absorber correspond to 1.585 mm, respectively, exhibiting their excellent EM absorption performance. The behavior of ultra-high temperature EM wave absorption properties was verified to the developed free-space measurement system linked with high temperature furnace for X-band from 25 degrees C to 1,000 degrees C.
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공학계열 > 기계항공우주공학부 > Journal Articles
공학계열 > Division of Mechanical and Aerospace Engineering > Journal Articles

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