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Synthesis, Microstruture and Electromagnetic Performance of NixZn1-xFe2O4 Ferrites with Different Ni/Zn Ratios Prepared by a Novel Molten Salt Method

机译:新型熔盐法制备不同Ni/Zn比NixZn1-xFe2O4铁氧体及其微结构和电磁性能

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NLZn1.xFe2O4 ferrites (x=0.0-1.0 with a step of 0.1) were prepared by a novel molten salt method. The effects of Ni/Zn ratio on the microstructure and electromagnetic performance of the acquired ferrites were investigated. All the samples are composed of a pure ferrite with cubic spinel structure, and their microstructures are quite homogeneous. With the increase of Ni content, the lattice constant of the samples decreases, the grain size fluctuates in a very narrow range around 2.0 urn, and the saturation magnetization firstly increases and then decreases, presenting the maximum value withx=0.6, while the coercivity basically displays an inverse trend to the saturation magnetization. In the frequency range from 1 M to 1 GHz, the initial permeability of the acquired NixZn1-xFe2O4 ferrites decreases, the cut-off frequency increases, and the magnetic loss decreases with increasing Ni content.
机译:NLZn1。采用新型熔盐法制备了xFe2O4铁氧体(x=0.0-1.0,步距为0.1)。研究了Ni/Zn比对铁氧体微观结构和电磁性能的影响。所有样品均由立方尖晶石结构的纯铁氧体组成,其微观结构非常均匀。随着镍含量的增加,样品的晶格常数降低,晶粒尺寸在2.0μm左右的很窄范围内波动,饱和磁化强度先增大后减小,在x=0.6时出现最大值,而矫顽力基本上与饱和磁化强度呈反比趋势。在1m到1ghz的频率范围内,随着Ni含量的增加,NixZn1-xFe2O4铁氧体的初始磁导率降低,截止频率增加,磁损耗降低。

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