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(07A336) High frequency magnetic properties and microstructure of NiZn/Co_2Z composite ferrite material

机译:(07A336)NIZN / CO_2Z复合铁氧体材料的高频磁性和微观结构

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The NiZn(Ni_(0.4)Zn_(0.6)Fe_2O_4) spinel ferrite and Co_2Z(Ba_3Co_2Fe_(24)O_(41)) hexagonal ferrite composite materials with the various Co_2Z contents have been synthesized by the solid-state reaction method. The phases and microstructures of the sintered ceramics have been analyzed. The results show that Co_2Z grains exist as a secondary phase in composites and remarkably affect the grain size and the static and high-frequency magnetic properties. With the addition ratio of Co_2Z varying from 0 wt. % to 30 wt. %, the saturation magnetization only changes slightly and is closely related to the density of sintered composites. Meanwhile, the initial permeability decreases and the cut-off frequency expands from 7 MHz to 300 MHz. In addition, the product (μ_i - 1)f_r of composites is much larger than that of the pure NiZn spinel ferrite.
机译:NiZn(Ni_(0.4)Zn_(0.6)Fe_2O_4)尖晶石铁氧体和CO_2Z(Ba_3CO_2FE_(24)O_(41))通过固态反应方法合成了具有各种CO_2Z含量的六边形铁氧体复合材料。已经分析了烧结陶瓷的阶段和微观结构。结果表明,CO_2Z晶粒作为复合材料中的二次相存在,并且显着影响晶粒尺寸和静态和高频磁性。 Co_2z的添加比率从0wt变化。 %到30 wt。 %,饱和磁化只有稍微变化,与烧结复合材料的密度密切相关。同时,初始渗透率降低,截止频率从7MHz扩展到300 MHz。此外,复合材料的产品(μ_i - 1)F_R远大于纯Nizn尖晶石铁氧体的产品。

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