居里温度
大气温度范围
材料科学
铁氧体(磁铁)
涡流
核磁共振
低频
铁氧体磁芯
磁导率
磁滞
饱和(图论)
分析化学(期刊)
复合材料
铁磁性
化学
凝聚态物理
热力学
电气工程
生物化学
色谱法
组合数学
膜
物理
数学
工程类
电磁线圈
天文
作者
Ke Sun,Zhongwen Lan,Zhong Yu,Zhiyong Xu,Xiaona Jiang,Zihui Wang,Zhi Liu,Ming Luo
摘要
A low-loss Mn0.7Zn0.24Fe2.06O4 ferrite has been prepared by a solid-state reaction method. The MnZn ferrite has a high initial permeability, μi (3097), a high saturation induction, Bs (526 mT), a high Curie temperature, Tc (220 °C), and a low core loss, PL (≤ 415 kW/m3) in a wide temperature (25–120 °C) and frequency (10–100 kHz) range. As the temperature increases, an initial decrease followed by a subsequent increase of hysteresis loss, Ph, and eddy current loss, Pe is observed. Both Ph and Pe increase with increasing frequency. When f ≥ 300 kHz, a residual loss, Pr, appears. Pe increases with increasing temperature and frequency. The temperature and frequency dependence of Ph can be explained by irreversible domain wall movements, Pe by the skin effect, and Pr by domain wall resonance, respectively.
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