涡流
材料科学
磁导率
频率依赖性
核磁共振
磁滞
凝聚态物理
芯(光纤)
分析化学(期刊)
化学
复合材料
电气工程
物理
生物化学
色谱法
工程类
膜
作者
Ke Sun,Zhongwen Lan,Zhong Yu,Lezhong Li,Xiaona Jiang,Haining Ji
标识
DOI:10.1016/j.physb.2009.10.047
摘要
The core losses (PL) of MnZn ferrites prepared by a solid-state reaction method were investigated as a function of magnetic induction and frequency (PL=kBmxfy). The exponent (x) of magnetic induction was 2.58 at 1000 kHz and 2.01 at 3000 kHz, and the exponent (y) of frequency was 2.22 at 30 mT and 2.73 at 10 mT. The core losses (PL) were divided into hysteresis loss (Ph), eddy current loss (Pe) and residual loss (Pr). Each loss contribution was discussed to be dependent on temperature. Ph decreased monotonically with increasing temperature. Pe firstly decreased with increasing temperature, minimized at 100 °C, and then increased. As the temperature increased, the imaginary permeability at MHz was significantly enhanced and the resonance frequency (fr) decreased. The increase in Pr with increasing temperature should be attributed to the decreasing fr which is due to the resonance in the domain wall caused by high speed rotation of spin inside the domain.
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