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Effect of Sintering Temperature on Magnetic Core-Loss Properties of a NiCuZn Ferrite for High-Frequency Power Converters

机译:烧结温度对高频功率变换器NiCuZn铁氧体磁芯损耗特性的影响

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摘要

In an effort to find a magnetic material for making low-loss magnetic components for high-power-density converters, we investigated the magnetic core-loss characteristics of a commercial NiCuZn ferrite (LSF 50) at 5 MHz as a function of the sintering temperature of the ferrite powder. The ferrite powder was compacted into toroid cores and then sintered at 850A degrees C, 900A degrees C, 950A degrees C, 1000A degrees C, and 1050A degrees C for 2 h. The sintered densities of the cores increased at higher sintering temperatures. The magnetic properties of the sintered cores-complex permeability and core-loss density-were measured. We found that both the real and imaginary parts of the relative permeability increased with sintering temperature. The core-loss results at 5 MHz showed that the cores sintered at 950A degrees C and 1000A degrees C had the lowest core-loss densities, being two to three times lower than that of a commercial NiZn ferrite (4F1) core. Microstructures of the sintered cores were examined by scanning electron microscopy; the grains grew significantly at higher sintering temperatures.
机译:为了找到一种用于制造高功率密度转换器的低损耗磁性元件的磁性材料,我们研究了商用NiCuZn铁氧体(LSF 50)在5 MHz下随烧结温度变化的磁芯损耗特性。铁氧体粉。将铁氧体粉末压制成环形磁芯,然后在850A,900A,950A,1000A和1050A的温度下烧结2小时。在较高的烧结温度下,芯的烧结密度增加。测量了烧结芯的磁性能-复磁导率和芯损耗密度。我们发现,相对磁导率的实部和虚部都随烧结温度的增加而增加。在5 MHz下的磁芯损耗结果表明,在950A和100​​0A摄氏度下烧结的磁芯具有最低的磁芯损耗密度,比商用NiZn铁氧体(4F1)磁芯低2至3倍。通过扫描电子显微镜检查了烧结芯的微观结构。在较高的烧结温度下,晶粒明显生长。

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