Effects of Sn substitution on the microstructural and electromagnetic properties of MnZn ferrite for high-frequency applications

被引:5
作者
Wu, Guohua [1 ]
Yu, Zhong [2 ]
Guo, Rongdi [1 ]
Wang, Zhiguang [1 ]
Wang, Hong [3 ]
Hu, Zhongqiang [1 ]
Liu, Ming [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Elect Sci & Engn, Elect Mat Res Lab, Key Lab,Minist Educ, Xian 710049, Peoples R China
[2] Univ Elect Sci & Technol China, Sch Mat & Energy, Chengdu 610054, Peoples R China
[3] Jiangxi Sunshine Elect Technol Co Ltd, Yichun 336200, Jiangxi, Peoples R China
基金
中国国家自然科学基金;
关键词
MnZn ferrites; substitution; grain; microstructure; core losses; MAGNETIC-PROPERTIES; TEMPERATURE-DEPENDENCE; ZN FERRITE; CORE LOSS; LOSSES; REGION; ADDITIONS; GROWTH; ENERGY; TIO2;
D O I
10.1088/1361-6463/acc113
中图分类号
O59 [应用物理学];
学科分类号
摘要
To achieve compact and lightweight power conversion devices, magnetic core materials such as MnZn ferrite are highly desired with low core losses at high frequencies above megahertz. In this work, high-valent Sn4+ ions were doped into MnZn ferrite to manipulate the electromagnetic properties and suppress the high-frequency core losses. The distribution of Sn4+ in MnZn ferrite was investigated by transmission electron microscopy with energy dispersive x-ray analysis, which indicated that most of the substituted Sn4+ ions remained at the grain boundaries rather than dissolving into the lattice, and thus greatly impacted the electromagnetic properties of MnZn ferrite. The initial permeability and saturation induction decreased monotonically with the Sn substitution. The core loss was reduced to 457 kW m(-3) at 3 MHz, 30 mT, and 25 degrees C when the Sn substitution content was 0.003, due to the effective suppression of eddy current loss and residual loss. The sample with a Sn content of 0.003 exhibited excellent overall electromagnetic properties, which could be potentially useful in high-frequency transformers, converters, and power sources.
引用
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页数:8
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共 46 条
[1]   Magnetic and Structural Properties of Manganese Zinc Soft Ferrite for High-Frequency Applications [J].
Ahmad, Zubair ;
Khan, Shakir ;
Waqar, Salman ;
Maqsood, Rizwan ;
Ali, Zaheer Anwar .
IEEE TRANSACTIONS ON MAGNETICS, 2022, 58 (11)
[2]   Enhancement of electric and magnetic properties of Mn-Zn ferrite by Ni-Ti ions substitution [J].
Ahmed, M. A. ;
Rady, K. E. ;
Shams, M. S. .
JOURNAL OF ALLOYS AND COMPOUNDS, 2015, 622 :269-275
[3]   Grain boundary engineering of power inductor cores for MHz applications [J].
Andalib, Parisa ;
Harris, Vincent G. .
JOURNAL OF ALLOYS AND COMPOUNDS, 2020, 832
[4]   Concurrent Core Loss Suppression and High Permeability by Introduction of Highly Insulating Intergranular Magnetic Inclusions to MnZn Ferrite [J].
Andalib, Parisa ;
Chen, Yajie ;
Harris, Vincent G. .
IEEE MAGNETICS LETTERS, 2018, 9
[5]   High-Frequency Power Transformers With Foil Windings: Maximum Interleaving and Optimal Design [J].
Barrios, Ernesto L. ;
Urtasun, Andoni ;
Ursua, Alfredo ;
Marroyo, Luis ;
Sanchis, Pablo .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2015, 30 (10) :5712-5723
[6]   Magnetic aging in TiO2-doped Mn-Zn ferrites [J].
Beatrice, Cinzia ;
Dobak, Samuel ;
Tsakaloudi, Vasiliki ;
Fiorillo, Fausto ;
Manioudaki, Alexandra ;
Zaspalis, Vassilios .
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2020, 502
[7]   Power Electronic Traction Transformer: Efficiency Improvements Under Light-Load Conditions [J].
Besselmann, Thomas ;
Mester, Akos ;
Dujic, Drazen .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2014, 29 (08) :3971-3981
[8]   Global Warming Energy, Environmental Pollution, and the Impact of Power Electronics [J].
Bose, Bimal K. .
IEEE INDUSTRIAL ELECTRONICS MAGAZINE, 2010, 4 (01) :6-17
[9]   Temperature dependence of core loss in Co-substituted MnZn ferrites [J].
Fujita, A ;
Gotoh, S .
JOURNAL OF APPLIED PHYSICS, 2003, 93 (10) :7477-7479
[10]   Temperature characteristics of core losses for HfO2 doped manganese-zinc ferrites [J].
Guo, Rongdi ;
Yang, Xiaofei ;
Sun, Ke ;
Li, Kaiwei ;
Yu, Zhong ;
Wu, Guohua ;
Zhang, Xiaofeng ;
Jiang, Xiaona ;
Lan, Zhongwen .
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2019, 491