Magnetic structure and properties of Mn-Zn ferrites prepared by radiation-enhanced thermal sintering
被引:0
作者:
V. G. Kostishin
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机构:Moscow Institute of Steel and Alloys (National University of Science and Technology),
V. G. Kostishin
V. V. Korovushkin
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机构:Moscow Institute of Steel and Alloys (National University of Science and Technology),
V. V. Korovushkin
L. V. Panina
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机构:Moscow Institute of Steel and Alloys (National University of Science and Technology),
L. V. Panina
V. G. Andreev
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机构:Moscow Institute of Steel and Alloys (National University of Science and Technology),
V. G. Andreev
A. S. Komlev
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机构:Moscow Institute of Steel and Alloys (National University of Science and Technology),
A. S. Komlev
N. A. Yudanov
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机构:Moscow Institute of Steel and Alloys (National University of Science and Technology),
N. A. Yudanov
A. Yu. Adamtsov
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机构:Moscow Institute of Steel and Alloys (National University of Science and Technology),
A. Yu. Adamtsov
A. N. Nikolaev
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机构:Moscow Institute of Steel and Alloys (National University of Science and Technology),
A. N. Nikolaev
机构:
[1] Moscow Institute of Steel and Alloys (National University of Science and Technology),
[2] Kuznetsk Institute of Information and Management Technologies,undefined
来源:
Inorganic Materials
|
2014年
/
50卷
关键词:
Ferrite;
Bismuth Oxide;
Green Compact;
Lithium Ferrite;
Vibratory Mill;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
2500NMS2 Mn-Zn ferrites have been produced by radiation-enhanced thermal sintering. We have studied the effect of basic ferrite composition and doping on the electromagnetic properties of ferrite products after radiation-enhanced thermal sintering. The results demonstrate that doping with bismuth oxide as a low-melting-point material allows one to activate sintering processes, thereby improving the performance of the material. Mössbauer spectroscopy and X-ray diffraction have been used to investigate general aspects of phase transformations during the radiation-enhanced thermal sintering of green compacts. The addition of surfactants is shown to be effective in raising the density of green compacts and improving the performance of the ferrites.