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Tailoring of Electromagnetic Absorption in Substituted Hexaferrites from 8.2 GHz to 12.4 GHz

机译:从8.2GHz到12.4 GHz的取代六氧化物中的电磁吸收剪裁

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Microwave absorbers are an important topic of interest to mitigate electromagnetic interference. Here, we have investigated electromagnetic absorption properties of Ba0.5Sr0.5CoxInxFe12-2xO19 hexaferrite prepared by the conventional ceramic method. M-type hexagonal structure in the compositions was confirmed from x-ray diffraction analysis. The role of Co2+ and In3+, thickness of composition and frequency on the electromagnetic absorption in the ferrite compositions has been explored from 8.2 GHz to 12.4 GHz. It was found that both Co2+-In3+ increased microwave/electromagnetic absorption with broad bandwidth, decreased the thickness and enhanced impedance matching. The reflection loss of -39.99 dB was noted in the composition x=0.2 for the thickness of 1.6 mm and a frequency of 11.14 GHz. The results conclude that investigated compositions of Ba0.5Sr0.5CoxInxFe12-2xO19 ferrite ameliorate absorber applications.
机译:微波吸收器是减轻电磁干扰的重要课题。 在此,我们已经研究了通过常规陶瓷方法制备的Ba0.5SR0.5coxinXFe12-2XO19六氧化钛矿的电磁吸收性能。 从X射线衍射分析中确认组合物中的M型六方结构。 CO2 +和IN3 +,组成和频率的作用已探讨了铁素体组合物中电磁吸收的频率,从8.2GHz到12.4GHz探讨。 发现CO2 + -IN3 +增加了具有宽带宽的微波/电磁吸收,降低了厚度和增强的阻抗匹配。 在组合物x = 0.2的厚度为1.6mm的厚度和11.14GHz的频率,反射损失。 结果得出结论,BA0.5SR0.5COXINXFE12-2XO19铁氧体改善吸收剂应用的研究组合物。

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