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Composite Electromagnetic Wave Absorber Made of Both Sendust and Aluminum Particles Dispersed in Polystyrene Resin

机译:铁硅铝和铝颗粒分散在聚苯乙烯树脂中的复合电磁波吸收体

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摘要

To design an electromagnetic wave absorber with good absorption properties at frequencies above 1 GHz, the frequency dependences of the relative complex permeability μ_r~*, the relative complex permittivity ε_r~*, and return loss were investigated for the composite made of both sendust (an alloy of Al 5%, Si 10%, and Fe 85%) and aluminum particles dispersed in polystyrene resin. It was found that the frequency dependence of μ_r~* for this composite can be changed by adjusting the particle size of aluminum and the volume mixture ratio of sendust and aluminum. Therefore, a flexible design of an absorber with good absorption characteristics was proposed based on the ability to control μ_r~*. The composite made of both sendust and aluminum was found to exhibit a return loss of less than -20 dB in the frequency range of not only several GHz but also around 20 GHz if appropriate volume mixture ratio and particle size were selected.
机译:为了设计一种在1 GHz以上的频率下具有良好吸收特性的电磁波吸收器,研究了两种铁硅铝镁铝复合材料制成的复合材料的相对复磁导率μ_r〜*,相对复介电常数ε_r〜*和回波损耗的频率依赖性。 5%的铝,10%的硅和85%的铁的合金)和铝颗粒分散在聚苯乙烯树脂中。已经发现,可以通过调节铝的粒径以及铝硅铁矿和铝的体积混合比来改变该复合材料的μ_r〜*的频率依赖性。因此,基于控制μ_r〜*的能力,提出了一种具有良好吸收特性的吸收体的柔性设计。如果选择适当的体积混合比和粒径,则发现由铁硅铝和铝制成的复合材料不仅在几GHz的频率范围内,而且在20 GHz左右的频率范围内,都具有小于-20 dB的回波损耗。

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