Influences of Bi2O3 on microstructure and magnetic properties of MnZn ferrite |
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Authors: | Zhong Yu Ke SunLezhong Li Yunfei LiuZhongwen Lan Huaiwu Zhang |
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Affiliation: | State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China, Chengdu 610054, PR China |
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Abstract: | MnZn ferrites were prepared by conventional oxide ceramic process. The effects of Bi2O3 on microstructure and magnetic properties of MnZn ferrites were investigated by means of characterizing the fracture surface micrograph, composition of grain boundary, magnetic properties and density by scanning electron microscope (SEM), energy dispersive X-ray spectroscope (EDS), B-H analyzer and Archimedes method, respectively. The results indicate that Bi2O3 mainly segregates and concentrates in the grain boundary regions, promotes solid-state reaction and grain growth, reduces porosity and enhances density. Optimum addition of Bi2O3 increases the permeability and saturation magnetic induction, meanwhile ensures the well frequency stability of permeability. |
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Keywords: | MnZn ferrite Bi2O3 additive Microstructure Grain boundary Frequency stability |
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