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首页> 外文期刊>Journal of magnetism and magnetic materials >Extending the operational frequency range of high B_x - FeSiBP amorphous alloy to GHz by coating the powder surface with silicon oxide
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Extending the operational frequency range of high B_x - FeSiBP amorphous alloy to GHz by coating the powder surface with silicon oxide

机译:通过用氧化硅覆盖粉末表面,将高B_x-FeSiBP非晶合金的工作频率范围扩展到GHz

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摘要

We report on the fabrication, and magnetic properties of high saturation magnetic flux density (B-s) Fe76Si9B10P5 glassy alloy powder cores in which powder particles were electrically insulated by a thin layer of silicon oxide. Glassy Fe76Si9B10P5 alloy powders produced by the gas atomization technique were treated with silane coupling agent, which forms a thin silicone oxide layer on the powder surface. Toroidal shaped cores were prepared by spark plasma sintering (SPS) technique. Magnetization measurements revealed a slight decrease in the saturation magnetization from 164 emu/g (as prepared powders) to 161 emu/g after surface coating. We show that the powder surface coating is effective for decreasing the core loss at higher frequencies by suppressing the interparticle eddy currents. It is possible to have a high constant initial permeability (mu(i)) of similar to 28 up to similar to 1.5 GHz by mixing with a small amount of resin. The constant permeability range can be extended to more than 3 GHz by completely insulating the powders electrically. Our results suggest that the metallic powder cores, which have the advantage of operating at higher B, compared to ferrites can be used in the GHz frequency range by decreasing the powder particle size and electrically insulating the powders by coating their surface properly.
机译:我们报告了高饱和磁通密度(B-s)Fe76Si9B10P5玻璃态合金压粉磁芯的制造和磁性能,其中粉末颗粒通过一层薄薄的氧化硅电绝缘。通过气相雾化技术生产的玻璃态Fe76Si9B10P5合金粉末用硅烷偶联剂处理,在粉末表面形成一层薄的氧化硅层。通过火花等离子体烧结(SPS)技术制备环形磁芯。磁化强度测量表明,表面涂覆后,饱和磁化强度从164 emu / g(作为制备的粉末)略微下降到161 emu / g。我们表明,粉末表面涂层可通过抑制颗粒间的涡流有效降低高频下的铁损。通过与少量树脂混合,可能具有接近28至高达1.5 GHz的高恒定初始磁导率(mu(i))。通过将粉末完全电绝缘,恒定磁导率范围可以扩展到3 GHz以上。我们的结果表明,与铁氧体相比,具有较高B值优势的金属压粉磁芯可通过减小粉末粒度并通过适当覆盖其表面使粉末电绝缘而在GHz频率范围内使用。

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