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High permeability and low loss flaky carbonyl iron soft magnetic composite for 5G applications

机译:用于5G应用的高渗透率和低损耗不足的羰基羰基硬磁性复合材料

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摘要

A soft magnetic composite (SMC) material with a large aspect ratio is prepared by a ball-milling method. Such SMCs have excellent high-frequency performance such as high permeability, saturation magnetization, and resonance frequency, which makes them have great potential in the field of 5G and high-frequency power devices. The flaky particles with large aspect ratios can effectively reduce eddy current loss and obtain larger permeability. Simultaneously, we also further studied the high-frequency magnetic properties and loss of SMCs with different aspect ratios. We obtained the magnetic spectra of samples with different aspect ratios and then established a loss model for flaky samples under high frequency and performed loss separation for these samples. The relationship between the aspect ratios, permeabilities, and three types of loss after separation is analyzed and discussed. A large aspect ratio can effectively improve the permeability and reduce the eddy current loss, and a high permeability due to a large aspect ratio can also reduce the hysteresis loss. The differentiation of magnetic domain and the variation in the number of domain walls caused by the process of obtaining the large aspect ratio (ball milled), high permeability caused by this process and number of displaced domain walls also affect the excess loss. This provides the possibility for the application of soft magnetic material composites at high frequencies.
机译:通过球磨方法制备具有大纵横比的软磁复合(SMC)材料。这种SMC具有出色的高频性能,如高渗透率,饱和磁化强度和共振频率,这使得它们在5G和高频功率器件领域具有很大的潜力。具有大纵横比的片状颗粒可以有效地降低涡流损失并获得更大的渗透性。同时,我们还进一步研究了具有不同纵横比的高频磁性和SMC的丧失。我们获得了具有不同纵横比的样品的磁光谱,然后在高频下建立了片状样品的损耗模型,并且对这些样品进行了损耗分离。分析并讨论了纵横比,渗透率和三种类型的损失之间的关系。大的纵横比可以有效地改善渗透性并降低涡流损失,并且由于大的纵横比引起的高渗透性也可以降低滞后损失。磁畴的分化和由获得大纵横比(球磨机)的过程引起的畴壁的数量的变化,由该过程产生的高渗透率和位移畴壁的数量也影响过量损失。这提供了在高频下施加软磁材料复合材料的可能性。

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  • 来源
    《Journal of Applied Physics》 |2020年第24期|244905.1-244905.9|共9页
  • 作者单位

    Key Laboratory of Opto-Technology and Intelligent Control Ministry of Education Lanzhou Jiaotong University Lanzhou 730000 People's Republic of China;

    Key Laboratory of Opto-Technology and Intelligent Control Ministry of Education Lanzhou Jiaotong University Lanzhou 730000 People's Republic of China;

    Institute of Applied Magnetism Key Laboratory for Magnetism and Magnetic Materials of Ministry of Education Lanzhou University Lanzhou 730000 People's Republic of China;

    Institute of Applied Magnetism Key Laboratory for Magnetism and Magnetic Materials of Ministry of Education Lanzhou University Lanzhou 730000 People's Republic of China;

    Institute of Applied Magnetism Key Laboratory for Magnetism and Magnetic Materials of Ministry of Education Lanzhou University Lanzhou 730000 People's Republic of China;

    Institute of Applied Magnetism Key Laboratory for Magnetism and Magnetic Materials of Ministry of Education Lanzhou University Lanzhou 730000 People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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