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Evaluation of Composite Electromagnetic Wave Absorber Made of Isolated Ni-Zn Ferrite or Permalloy

机译:隔离镍锌铁氧体或坡莫合金制成的复合电磁波吸收体的评估

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It has been found that if a composite material consists of a magnetic material isolated in a dielectric medium, the relative complex permeability of the composite material does not obey Lichtenecker's law, which is well known to explain the relative complex permeability and permittivity of composite materials. This characteristic leads to the absorption of electromagnetic wave power at frequencies above 1 GHz. We proposed an isolation model to simulate the frequency dependence of the relative complex perme-ability and developed a composite electromagnetic wave absorber made of ferrite-SiO_2 or a permalloy-polystyrene system in which magnetic materials are isolated. The me-chanical milling method was employed to isolate the mag-netic material in the dielectric medium. Ni-Zn ferrite particles could be isolated in the SiO_2 medium and the measured values of the relative complex permeability were close to those calculated from the isolation model. Conse-quently, this absorber could absorb electromagnetic wave power in the frequency range from 1 to 3 GHz. Permalloy particles were also isolated in a polystyrene resin medium. The absorber made of permalloy and polystyrene resin exhibited good absorption characteristics in the frequency range between 3 and 8 GHz.
机译:已经发现,如果复合材料由隔离在介电介质中的磁性材料组成,则复合材料的相对复磁导率不服从利奇特内克定律,这是众所周知的解释复合材料的相对复磁导率和介电常数的方法。该特性导致在高于1 GHz的频率下吸收电磁波功率。我们提出了一个隔离模型来模拟相对复磁导率的频率依赖性,并开发了一种由铁氧体-SiO_2或坡莫合金-聚苯乙烯系统制成的复合电磁波吸收器,其中磁性材料被隔离。机械铣削方法用于隔离介电介质中的磁性材料。可以在SiO_2介质中分离出Ni-Zn铁氧体颗粒,相对复磁导率的测量值接近于根据分离模型计算得出的值。因此,这种吸收器可以吸收1至3 GHz频率范围内的电磁波功率。坡莫合金颗粒也被分离在聚苯乙烯树脂介质中。由坡莫合金和聚苯乙烯树脂制成的吸收体在3至8 GHz的频率范围内表现出良好的吸收特性。

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