材料科学
磁导率
退火(玻璃)
相对渗透率
涡流
低频
铁磁性
磁场
功率损耗
光电子学
复合材料
功率(物理)
凝聚态物理
电气工程
膜
遗传学
生物
物理
量子力学
天文
多孔性
工程类
作者
Hongxia Li,Ziwen Lu,Shuai Yu,Mengyi Zhao,Zhaoyuan Liu,Zhong Li,Huawei Rong,Xuefeng Zhang
标识
DOI:10.1002/adfm.202403515
摘要
Abstract Soft magnetic composites (SMCs) are key materials in electronic devices. Conventional SMCs incorporate too much insulating material in order to reduce eddy current loss at high frequency, resulting in severe magnetic dilution and demagnetization field, which leads to deterioration of the magnetic performance. In this paper, ZnO precursor is homogeneously deployed on the surface of FeSiAl, which in situ generates a thin and dense Al 2 O 3 layer on the surface of FeSiAl through the interfacial solid phase reaction between Al and O atoms during annealing process. Meanwhile, ferromagnetic ZnO layer is simultaneously obtained due to the loss of O. The formed Al 2 O 3 /ZnO layers effectively reduce power loss and endow high frequency stability with less influence on effective permeability. Finally, FeSiAl/ZnO‐0.4% SMC exhibits low power loss of 83.2 mW cm −3 (50 mT/100 kHz), high effective permeability of 92, and cut‐off frequency as high as 40 MHz. This study provides an efficient route for high performance SMCs and broadens high frequency application of soft magnetic devices.
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