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Novel Method for Making Surface Insulation Layer on Fe-Based Amorphous Alloy Powder by Surface-Modification Using Two-Step Acid Solution Processing

机译:两步酸溶液法表面改性制备铁基非晶态合金粉末表面绝缘层的新方法

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摘要

By introducing the SiC/GaN power devices, the high-frequency switching dc-dc converters are expected to have higher efficiency and lightweight. This paper focuses on the Fe-based amorphous alloy powder (Fe-Si-B-Cr-C based) used in the metal composite bulk magnetic core for high-frequency power inductor and transformer. In terms of eddy-current loss at MHz band or beyond, iron-based metal composites are required to have fine magnetic particles with surface insulation layer. In this paper, the finest amorphous powder with a median diameter of 2.57 μm made by water atomization process was used. In order to fabricate the amorphous powder with surface insulation layer, a surface-modification scheme through the two-step acid solution processing using phosphoric acid and hydrochloric acid was introduced. As a result, the surface-modification scheme enabled to make a single-phase silica thin layer on the surface of the amorphous powder, and the silica thin layer was considered to be derivable from the silicon element in the amorphous (Fe-Si-B-Cr-C based) powder.
机译:通过引入SiC / GaN功率器件,高频开关DC-DC转换器有望具有更高的效率和更轻的重量。本文重点研究用于高频功率电感器和变压器的金属复合体磁芯中的铁基非晶合金粉末(Fe-Si-B-Cr-C基)。就在MHz频带或更高频带的涡流损耗而言,要求铁基金属复合材料具有带表面绝缘层的细磁性颗粒。在本文中,使用了通过水雾化工艺制得的中值直径为2.57μm的最细无定形粉末。为了制造具有表面绝缘层的无定形粉末,引入了通过使用磷酸和盐酸的两步酸溶液处理的表面改性方案。结果,该表面改性方案使得能够在非晶态粉末的表面上形成单相二氧化硅薄层,并且认为该二氧化硅薄层源自非晶态(Fe-Si-B -Cr-C基粉末)。

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