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Broadband microwave absorption properties of polyurethane foam absorber optimized by sandwiched cross-shaped metamaterial 被引量:1

Broadband microwave absorption properties of polyurethane foam absorber optimized by sandwiched cross-shaped metamaterial
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摘要 The effect of a sandwiched cross-shaped metamaterial absorber(CMMA) on microwave absorption properties of the double-layered polyurethane foam absorber(PUFA) is investigated. Combining with the sandwiched CMMA, the bandwidth of -10-dB reflection loss for PUFA is broadened from 7.4 GHz to 9.1 GHz, which is attributed to the overlap of two absorption peaks originating from CMMA and PUFA, respectively. The values of the two absorption peaks located at 10.15 GHz and 14.7 GHz are -38.44 dB and -40.91 dB, respectively. Additionally, distribution of surface current,electromagnetic field and power loss density are introduced to investigate the absorption mechanism of the CMMA. The electromagnetic field distribution of the double-layered PUFA and the three-layered hybrid absorber are comparatively analyzed to ascertain the influence of CMMA. The results show that the proposed hybrid absorber can be applied to the anti-electromagnetic interference and stealth technology. The effect of a sandwiched cross-shaped metamaterial absorber(CMMA) on microwave absorption properties of the double-layered polyurethane foam absorber(PUFA) is investigated. Combining with the sandwiched CMMA, the bandwidth of -10-dB reflection loss for PUFA is broadened from 7.4 GHz to 9.1 GHz, which is attributed to the overlap of two absorption peaks originating from CMMA and PUFA, respectively. The values of the two absorption peaks located at 10.15 GHz and 14.7 GHz are -38.44 dB and -40.91 dB, respectively. Additionally, distribution of surface current,electromagnetic field and power loss density are introduced to investigate the absorption mechanism of the CMMA. The electromagnetic field distribution of the double-layered PUFA and the three-layered hybrid absorber are comparatively analyzed to ascertain the influence of CMMA. The results show that the proposed hybrid absorber can be applied to the anti-electromagnetic interference and stealth technology.
作者 Long-Hui He Lian-Wen Deng Heng Luo Jun He Yu-Han Li Yun-Chao Xu Sheng-Xiang Huang 贺龙辉;邓联文;罗衡;贺君;李宇涵;徐运超;黄生祥
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2018年第12期487-492,共6页 中国物理B(英文版)
基金 Project supported by the National Key Research and Development Program of China(Grant No.2017YFA0204600) the National Natural Science Foundation of China(Grant No.51802352) the Fundamental Research Funds for the Central Universities of Central South University,China(Grant No.2018zzts355)
关键词 polyurethane foam absorber METAMATERIAL broadband microwave absorption mechanism polyurethane foam absorber metamaterial broadband microwave absorption mechanism
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