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The percolation effect and optimization of soft magnetic properties of FeSiAl magnetic powder cores

机译:FeSiAl磁粉芯的渗透作用及其软磁性能的优化

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In this paper, a new magnetic percolation phenomenon between the green compact density ρ and effective permeability μe in FeSi_(9.6)Al_(6.5) magnetic powder cores, was discovered. The Magnetic Percolation Area of ρ is the range of 5.6 g/cm~3 ∼ 5.78 g/cm~3, and the percolation threshold is 5.78 g/cm~3. As a result of the guidance of the percolation theory, the best comprehensive magnetic properties have been optimized through adjusting the distribution of powders. The special distribution of the magnetic powder cores with the best comprehensive magnetic properties was as follows: the content 60% with the particle size distribution of 100-200 mesh, the content 20% with the particle size distribution of 200-325 mesh and the content 20% with the particle size distribution of ≥400 mesh. When the green compact density ρ of cores was 5.79 g/cm~3, and the frequency was in the range of 1 kHz ∼ 100 kHz, the best comprehensive magnetic properties were as follows: μe = 91, ∆μ = 0.61%, μe(H80 Oe) = 43, μe(H100 Oe) = 33, μe(H120 Oe) = 26, Pc(50 mT/20 kHz) = 30.58 kW/m~3, Pc(50 mT/50 kHz) = 76.85 kW/m~3, Pc(50 mT/100 kHz) = 178 kW/m~3. Not only have those cores the excellent constant magnetic properties with frequency, the excellent DC superposition characteristic and the lower loss at high frequency, but also the effective permeability outstandingly goes up, which has important significance for the miniaturization of inductance components.
机译:本文发现了FeSi_(9.6)Al_(6.5)磁粉芯中生坯密度ρ和有效磁导率μe之间的新磁渗透现象。 ρ的磁渗透面积范围为5.6 g / cm〜3〜5.78 g / cm〜3,渗透阈值为5.78 g / cm〜3。在渗流理论的指导下,通过调整粉末的分布可以优化最佳的综合磁性能。具有最佳综合磁性能的磁粉芯的特殊分布如下:含量为60%,粒径分布为100-200目;含量为20%,粒径分布为200-325目,且粒度分布≥400目时为20%。当芯的生坯致密密度ρ为5.79 g / cm〜3,且频率在1 kHz〜100 kHz范围内时,最佳综合磁性能如下:μe= 91,∆μ = 0.61%,μe (H80 Oe)= 43,μe(H100 Oe)= 33,μe(H120 Oe)= 26,Pc(50 mT / 20 kHz)= 30.58 kW / m〜3,Pc(50 mT / 50 kHz)= 76.85 kW / m〜3,Pc(50 mT / 100 kHz)= 178 kW / m〜3。这些磁芯不仅具有随频率变化的恒定磁性能,出色的直流叠加特性和高频下的低损耗,而且有效磁导率也显着提高,这对于电感组件的小型化具有重要意义。

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