Microwave reflection characteristics of surface-modified Fe50Ni50 fine particle composites
Surface-modified planar-anisotropy Fe50Ni50 particle-resin composites have been studied in the microwave frequency range. After surface modification, the eddy current effect is suppressed effectively while the permeability is almost unchanged. High permeability and appropriate permittivity are obtai...
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Veröffentlicht in: | Journal of applied physics 2010-12, Vol.108 (12) |
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creator | Wei, Jianqiang Zhang, Zhaoqi Wang, Bochong Wang, Tao Li, Fashen |
description | Surface-modified planar-anisotropy Fe50Ni50 particle-resin composites have been studied in the microwave frequency range. After surface modification, the eddy current effect is suppressed effectively while the permeability is almost unchanged. High permeability and appropriate permittivity are obtained at the meantime. Simulated microwave reflection result shows that the matching thickness, corresponding frequency, μ and ε is coincident with the quarter wavelength matching condition. The surface-modified Fe50Ni50/resin composites can be attractive candidates for thinner microwave absorbers in L-band (1–2 GHz). |
doi_str_mv | 10.1063/1.3524546 |
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After surface modification, the eddy current effect is suppressed effectively while the permeability is almost unchanged. High permeability and appropriate permittivity are obtained at the meantime. Simulated microwave reflection result shows that the matching thickness, corresponding frequency, μ and ε is coincident with the quarter wavelength matching condition. 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After surface modification, the eddy current effect is suppressed effectively while the permeability is almost unchanged. High permeability and appropriate permittivity are obtained at the meantime. Simulated microwave reflection result shows that the matching thickness, corresponding frequency, μ and ε is coincident with the quarter wavelength matching condition. The surface-modified Fe50Ni50/resin composites can be attractive candidates for thinner microwave absorbers in L-band (1–2 GHz).</abstract><doi>10.1063/1.3524546</doi><oa>free_for_read</oa></addata></record> |
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title | Microwave reflection characteristics of surface-modified Fe50Ni50 fine particle composites |
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