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Improved Magnetic Properties of Silicon-Iron Alloy Powder Core

机译:改进硅 - 铁合金粉末芯的磁性

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Eventhough Fe-6.5 wt.% Si alloy shows excellent magnetic properties, magnetic components made of the alloy with the composition are not totally commercialized because of its extremely low ductility. In order to overcome this demerit of alloy, 6.7 wt.% Si alloy powders were produced by gas atomization and then post-processed to form magnetic cores. By doing so, the total core loss could be minimized by reducing both hysteresis and eddy current loss, which were attributed to both grain size adjustment and particle size control. From our experiments, we were able to achive a core loss of 390 mW/cm~3 at an induction of 0.1 T and 50 kHz through proper processes and a permeability μ_(eff) of 68 at low frequency was kept up to 700 kHz. These properties are compatable with the properties of well-known soft magnetic materials such as Fe-Si-Al and Ni-Fe alloys. From the above results, it can be concluded that Fe-Si alloy powders with high Si content have very high potential for the commercialization and application of the core.
机译:Eventhough Fe-6.5重量%Si合金显示出优异的磁性,由于其极低的延展性,由组合物制成的合金制成的磁性部件并不完全商业化。为了克服合金的这种缺点,6.7重量%。通过气体雾化产生%Si合金粉末,然后后处理以形成磁性核心。通过这样做,通过减少滞后和涡流损失,可以最小化总核损失,这归因于晶粒尺寸调节和粒度控制。从我们的实验来看,通过适当的方法,我们能够在0.1T和50kHz的诱导下核心损失390mW / cm〜3,通过适当的方法,低频低频的渗透性μ_(eff)保持高达700 kHz。这些性能与公知的软磁材料的性质相容,例如Fe-Si-Al和Ni-Fe合金。从上述结果中,可以得出结论,具有高Si含量的Fe-Si合金粉末对核心的商业化和应用具有很大的潜力。

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