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The effect of flake thickness on anisotropic SmCo_5 nanoflakes/submicron-flakes with high energy product

机译:薄片厚度对高能积各向异性SmCo_5纳米薄片/亚微米薄片的影响

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摘要

Establishing an effective process to synthesize anisotropic magnetic nanopowders that have both high energy products and high coercivity is highly desirable for many applications. A recent effort using surfactant-assisted high energy milling is proved to be capable of making SmCo_5 nanoflakes/ submicron-flakes with high performance. Using the cast alloy as a starting powder, a series of the flakes with various thicknesses were made, which had energy product values up to 22 MGOe and coercivity values up to 21 kOe. The highest coercivity corresponds to a typical flake thickness of 180 nm. The key to our technique is retaining the crystallinity, which allows a high degree of anisotropy to be produced. Results of the analyses from the micrograph of SEM, XRD patterns, and magnetic measurements demonstrate the effect of flake thickness on the magnetic properties. More importantly, a relationship of property-morphology correlation in nanoscale is established for rare earth magnetic powder/flakes.
机译:对于许多应用而言,非常需要建立一种有效的方法来合成兼具高能量乘积和高矫顽力的各向异性磁性纳米粉末。事实证明,最近使用表面活性剂辅助的高能研磨技术可以使SmCo_5纳米薄片/亚微米薄片具有高性能。使用铸造合金作为起始粉末,制成了一系列具有各种厚度的薄片,其能量乘积值高达22 MGOe,矫顽力值高达21 kOe。最高矫顽力对应于典型的180 nm薄片厚度。我们技术的关键是保持结晶度,这可以产生高度的各向异性。 SEM,XRD图谱和磁测量的显微分析结果表明,薄片厚度对磁性能的影响。更重要的是,建立了稀土磁性粉末/薄片的纳米级性质-形态相关关系。

著录项

  • 来源
    《Journal of Applied Physics》 |2011年第2期|p.07A762.1-07A762.3|共3页
  • 作者单位

    University of Dayton, Dayton, Ohio 45469, USA;

    University of Dayton, Dayton, Ohio 45469, USA;

    Air Force Research Laboratory, Wright-Patterson Air Force base, Ohio 45433, USA;

    Air Force Research Laboratory, Wright-Patterson Air Force base, Ohio 45433, USA;

    University of Dayton, Dayton, Ohio 45469, USA,GE Global Research, Niskayuna, New York 12309;

  • 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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