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首页> 外文期刊>Journal of Electroceramics >Preparation, thermal stability and permeability behavior of substituted Z-type hexagonal ferrites for multilayer inductors
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Preparation, thermal stability and permeability behavior of substituted Z-type hexagonal ferrites for multilayer inductors

机译:多层电感器用取代Z型六角形铁氧体的制备,热稳定性和磁导性能

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Co2Z-type hexagonal ferrites with iron excess Ba3Co2 ? x Fe24 + x O41 (0 ≤ x ≤ 0.8) and deficiency Ba3Co2 + y Fe24 ? y O41 (0 ≤ y ≤ 0.6) were prepared by an oxalate coprecipitation technique. This synthesis route leads to almost single phase Z-type ferrites for x = 0 after calcination and sintering at 1330 °C. The Z-type formation is enhanced for x > 0 and single phase ferrites are obtained for 0.4 ≤ x ≤ 0.8. The permeability of Z-type ferrites varies with composition x: Maximum permeability of μ′ = 28 is observed for 0.4 ≤ x ≤ 0.6 for samples sintered at 1330 °C. The frequency dispersion shows broad peaks of μ″ stretching from 200 MHz to >1 GHz. For iron deficient samples 0 ≤ y ≤ 0.6 multi-phase mixtures were obtained. For Ag-based multilayer inductor applications sintering at 950 °C is required. Co2Z ferrites with Fe excess are not stable at this temperature as demonstrated by XRD. The permeability of samples sintered at 950 °C is drastically reduced to μ′ = 3. This demonstrates that these materials are not able to provide sufficient permeability for multilayer inductors for high-frequency operations since they are not compatible with the low temperature ceramic cofiring technology.
机译:过量铁Ba3 Co2的Co2 Z型六角铁氧体? x Fe24 + x O41 (0≤x≤0.8)和缺乏Ba3 Co2 + y Fe24? y O41 (0≤y≤0.6)是通过草酸盐共沉淀技术制备的。在1330°C下煅烧和烧结后,该合成路线导致x = 0的几乎单相Z型铁氧体。当x> 0时,Z型形成得到增强,对于0.4≤x≤0.8,可获得单相铁氧体。 Z型铁氧体的磁导率随组成x的变化而变化:对于在1330°C下烧结的样品,当0.4≤x≤0.6时,最大磁导率μ'= 28。频率色散显示了从200 MHz扩展到> 1 GHz的μ''宽峰。对于缺铁样品,获得0≤y≤0.6的多相混合物。对于基于Ag的多层电感器应用,需要在950°C下烧结。 XRD证实,Fe过量的Co2 Z铁氧体在此温度下不稳定。在950°C下烧结的样品的磁导率急剧降低至μ'=3。这表明这些材料不能与用于高频操作的多层电感器提供足够的磁导率,因为它们与低温陶瓷共烧技术不兼容。

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