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首页> 外文期刊>Physica, B. Condensed Matter >Effects of second milling time to the core loss of MnZn ferrites for high frequency application
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Effects of second milling time to the core loss of MnZn ferrites for high frequency application

机译:第二铣削时间对高频应用MnZn铁氧体核心损耗的影响

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摘要

The effect second milling time on the electromagnetic properties of MnZn ferrites has been studied up to MHz range. The average particle sizes of powder ranging from 1.49 to 1.16 mu m were obtained by varying the second milling time from 72 to 324min. It is found that the total losses (P-cv) deteriorate when the second milling time over 252 min and the limit particle size is 1.21 mu m. The value of initial permeability (mu(i)) reduces by 20% when the particle size is 1.16 mu m due to the uneven distribution of grain size, indicating that uniform microstructure demands suitable particle size. Meanwhile, the eddy current loss (P-e) and residual loss (P-r) dominate the total loss at 3 MHz playing a significant role in total losses. The hysteresis loss (P-h) and eddy current loss (P-e) deteriorate gradually at 3 MHz when the particle size is 1.21 mu m at 100 degrees C. The residual loss increases greatly with the particle size decreasing at 3 MHz. An excellent MnZn power ferrite possessing high initial permeability (mu(i) = 887), high saturation magnetic flux density (B-s = 531 mT) and low total losses (P-cv = 1940 kW/m(3)) at 3 MHz-50 mT is synthesized in this research.
机译:上MnZn铁氧体的电磁特性的影响第二研磨时间已经研究长达MHz范围内。粉末为1.49至1.16微米的平均粒径是通过改变第二研磨时间从72至324min获得。据发现,总损耗(P-CV)劣化时所述第二研磨时间超过252分钟,限制粒度为1.21微米。的起始磁导率的值(亩(i))的20%降低时,粒径为1.16微米,由于晶粒尺寸分布不均匀,这表明均匀的微观结构需要合适的颗粒尺寸。同时,涡流损耗(P-e)和剩余损耗(P-R)支配在3 MHz的总损耗打在总损耗的显著作用。磁滞损耗(P-h)和涡流损耗(P-E)在3 MHz逐渐恶化,当粒径为1.21微米,在100℃下与粒径在3 MHz降低所述剩余损失大大增加微米。优异的MnZn铁氧体具有高初始磁导率(亩(1)= 887),高饱和磁通密度(Bs = 531 MT)和低的总损失为3 MHz-(P-CV = 1940千瓦/米(3)) 50 MT为在此研究中合成的。

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