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Monostatic RCS Reduction by Gap-Fill with Epoxy/MWCNT in Groove Pattern
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  • Monostatic RCS Reduction by Gap-Fill with Epoxy/MWCNT in Groove Pattern
  • Monostatic RCS Reduction by Gap-Fill with Epoxy/MWCNT in Groove Pattern
저자명
Choi. Won-Ho,Jang. Hong-Kyu,Shin. Jae-Hwan,Song. Tae-Hoon,Kim. Jin-Kyu,Kim. Chun-Gon
간행물명
Journal of the Korean Institute of Electromagnetic Engineering and Science
권/호정보
2012년|12권 1호|pp.101-106 (6 pages)
발행정보
한국전자파학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

In this study, we investigated the effect of groove pattern and gap-fill with lossy materials at 15 GHz frequency of Ku-band. We used Epoxy/MWCNT composite materials as gap-fill materials. Although epoxy does not have an absorbance capability, epoxy added conductive fillers, which are multi-walled carbon nanotubes (MWCNT), can function as radar absorbing material. Specimens were fabricated with different MWCNT mass fractions (0, 0.5, 1.0, 2.0 wt%) and their permittivity in the Ku-band was measured using the waveguide technique. We investigated the effect of gap-fill on monostatic RCS by calculating RCS with and without gap-fill. For arbitrarily chosen thickness and experimentally obtained relative permittivity, we chose the relative permittivity of MWCNT at 2 wt% (${varepsilon}_r$=8.8-j2.4), which was the lowest reflection coefficient for given thickness of 3.3 mm at V-pol. and $80^{circ}$ incident angle. We also checked the monostatic RCS and the field intensity inside the groove channel. In the case of H-pol, gap-fill was not affected by the monostatic RCS and magnitude was similar with or without gap-fill. However, in the case of V-pol, gap-fill effectively reduced the monostatic RCS. The field intensity inside the groove channel reveals that different RCS behaviors depend on the wave polarizations.