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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Doping effect on microwave reflection characteristics for W-type ferrite/epoxy composites
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Doping effect on microwave reflection characteristics for W-type ferrite/epoxy composites

机译:掺杂对W型铁氧体/环氧树脂复合材料微波反射特性的影响

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摘要

The reflection properties have been studied for BaCoZnFe16O27 composites doped with 0.5 wt% CaO, Bi2O3, SiO2, and 1 wt% Nb2O5 and V2O5. For composites undoped and doped with SiO2, Nb2O5 and V2O5 two matching thicknesses, t(m1) and t(m2), and two corresponding matching frequencies, f(m1) and f(m2), are observed. t(m1) has its origin in the quarter wavelength matching condition and t(m2) is related to the magnetic resonance. As compared with the original composite, doping of CaO, Bi2O3 and SiO2 deteriorates the reflection properties of composites due to a large increase in epsilon', which leads to a mismatch between the material and free space. On the other hand, doping of Nb2O5 and V2O5 can significantly improve the reflectivity and bandwidth, due to enhanced mu(0)' and mu(max)'' max, and almost unchanged epsilon'. The two composites doped with Nb2O5 and V2O5 are potential candidates for use as EM materials with low reflectivity and broad bandwidth at microwave frequency.
机译:已经研究了掺有0.5 wt%CaO,Bi2O3,SiO2和1 wt%Nb2O5和V2O5的BaCoZnFe16O27复合材料的反射性能。对于未掺杂和掺杂SiO2,Nb2O5和V2O5的复合材料,观察到两个匹配的厚度t(m1)和t(m2),以及两个相应的匹配频率f(m1)和f(m2)。 t(m1)起源于四分之一波长匹配条件,t(m2)与磁共振有关。与原始复合材料相比,CaO,Bi2O3和SiO2的掺杂会由于ε'的大幅增加而降低复合材料的反射性能,从而导致材料和自由空间之间的不匹配。另一方面,由于增强了mu(0)'和mu(max)''max,以及几乎不变的epsilon',Nb2O5和V2O5的掺杂可以显着提高反射率和带宽。掺有Nb2O5和V2O5的两种复合材料是潜在的候选材料,可用作微波频率下具有低反射率和宽带宽的EM材料。

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