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High-Frequency Properties of Fe-4.5 Wt% Si Powders With an Insulating Layer Synthesized by a Modified Dew-Point Treatment

机译:通过改性露点处理合成具有绝缘层的Fe-4.5 Wt%Si粉的高频性能

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The frequency for wireless power chargers is in the range of 100-205 kHz when using MnZn ferrite and NiZn ferrite. Compared to ferromagnetic metals, these ferrites have higher resistivity, which reduces the eddy loss at high frequencies, though they also have lower magnetization values that limit the distance and the direction between the receiver and transmitter units. Thus, there is a strong demand for the development of a new metallic magnetic sheet that can suppress the eddy-current loss in the high-frequency range. To meet this demand, a modified dew-point insulation coating method for Fe-4.5 wt% Si powders was assessed and the high-frequency properties of green compacts consisting of these powders were investigated. As a result, a thin high-resistivity layer was successfully coated onto the powders. In addition, both eddy-current loss and hysteresis loss of their compacts were dramatically reduced in the high-frequency region.
机译:使用MnZn铁氧体和NiZn铁氧体时,无线充电器的频率在100-205 kHz的范围内。与铁磁性金属相比,这些铁氧体具有更高的电阻率,尽管在磁化强度较低的情况下仍会限制接收器和发射器之间的距离和方向,但它们的电阻率更高,从而降低了高频下的涡流损耗。因此,强烈需要开发能够抑制高频范围内的涡电流损失的新型金属磁性片。为了满足该需求,评估了用于Fe-4.5 wt%Si粉末的改进的露点绝缘涂层方法,并研究了由这些粉末组成的生坯的高频特性。结果,薄的高电阻率层成功地涂覆在粉末上。另外,在高频区域,其成形体的涡流损耗和磁滞损耗均显着降低。

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