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Enhancing the Microwave Absorption Properties of Fe–Cu–Nb–Si–B Nanocomposite Flakes by Coating With Spinel Ferrite NiFe2O4

机译:尖晶石型铁氧体NiFe 2 O 4 涂层增强Fe-Cu-Nb-Si-B纳米复合片的微波吸收性能

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摘要

Fe–Cu–Nb–Si–B nanocomposite flakes have been coated with spinel ferrite NiFeO by a low-temperature chemical deposition. Compared with the uncoated alloy flakes, the complex permittivity of coated flakes decreases dramatically, while the permeability decreases to some extent. Such a large decrease of the complex permittivity has been studied by investigating the microstructure of the coated flakes. Furthermore, it is believed that such coating treatments result in a better impedance matching. For coated flakes, the reflection losses (RLs) (less than −10 dB) can be achieved within 0.7–4.8 GHz for a composite with the thicknesses varying between 1.95 and 10 mm. However, for composites containing uncoated flakes, their RLs values almost cannot be less than −10 dB. Moreover, the matching characteristics have been compared for both kinds of flakes. The obvious enhancement in microwave absorption properties of the coated flakes can be attributed to the improvement in impedance matching.
机译:Fe-Cu-Nb-Si-B纳米复合片已经通过低温化学沉积涂有尖晶石铁素体NiFeO。与未涂覆的合金薄片相比,涂覆的薄片的复介电常数显着降低,而磁导率有所降低。通过研究涂覆的薄片的微观结构已经研究了复介电常数的如此大的降低。此外,据信这种涂覆处理导致更好的阻抗匹配。对于涂层鳞片,对于厚度在1.95到10 mm之间的复合材料,反射损耗(RLs)(小于-10 dB)可以在0.7–4.8 GHz范围内实现。但是,对于含有未涂层薄片的复合材料,其RLs值几乎不能低于-10 dB。而且,已经比较了两种薄片的匹配特性。涂层薄片的微波吸收性能的明显提高可归因于阻抗匹配的改善。

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