利用粒度效应增强 SiO2 涂层铁硅铬磁粉芯的软磁特性

Mingyue Ge, Likang Xiao, Xiaoru Liu, Lin Pan, Zhangyang Zhou, Jianghe Lan, Zhengwei Xiong, Jichuan Wu, Zhipeng Gao
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引用次数: 0

摘要

以往的研究通常采用平均粒径较大的金属 FeSiCr 粉末来制备磁粉芯(SMC),很少有研究报道平均粒径小于 10 μm 的各种原始粉末对磁性能的影响。本研究采用溶胶-凝胶工艺合成了不同小粒径的 SiO2 涂层 FeSiCr SMC。研究阐述了 SiO2 涂层量和空隙对软磁特性的影响。研究发现,较小粒度和较少空隙有利于减少 SMC 的磁芯损耗。通过优化磁芯结构,在粒度为 4.8 μm 和正硅酸乙酯添加量为 0.1 mL/g 时,100 kHz 和 50 mT 下的磁导率和磁损分别为 26 和 262 kW/cm3。在 100 Oe 条件下,正硅酸乙酯添加量为 0.25 mL/g,直流叠加性能最佳,达到 87%。与其他软磁复合材料(SMC)相比,FeSiCr/SiO2 SMC 的磁损耗显著降低。它进一步降低了粉芯的磁损,为软磁复合材料在高频率下的应用提供了一种新策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced soft magnetic properties of SiO2-coated FeSiCr magnetic powder cores by particle size effect
Previous investigations have typically employed metal FeSiCr powders with large average particle sizes to prepare the magnetic powder cores (SMCs), with few studies reporting on the influence of magnetic properties for original powders with various average particle sizes less than 10 μm. In this work, the SiO2-coated FeSiCr SMCs with different small particle sizes were synthesized using the sol-gel process. The contribution of SiO2 coating amount and voids to the soft magnetic properties was elaborated. The mechanism was revealed by that smaller particle sizes with less voids could be beneficial for reducing core loss in the SMCs. By optimizing the core structure, permeability and magnetic loss of 26 and 262 kW/cm3 at 100 kHz and 50 mT were achieved at a particle size of 4.8 μm and ethyl orthosilicate addition of 0.1 mL/g, respectively. The best DC stacking performance, reaching 87%, was observed at an ethyl orthosilicate addition rate of 0.25 mL/g under 100 Oe. Compared to other soft magnetic composites (SMCs), the FeSiCr/SiO2 SMCs exhibited significantly reduced magnetic loss. It further reduces the magnetic loss of the powder core, providing a new strategy for the application of SMCs at high frequencies.
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