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Soft magnetic composites manufactured by warm co-extrusion of bulk metallic glass and steel powders

机译:通过将大块金属玻璃和钢粉热共挤出制造的软磁复合材料

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摘要

Soft magnetic composites ot Fe-based bulk metallic glass and low-alloy steel have been manufactured by warm co-extrusion of precursor powders at temperatures within the supercooled liquid region of the glass. Composites were manufactured with amorphous volume fractions of 75%, 67%, and 100%. Full consolidation of the constituent powders was observed with the bulk metallic glass remaining substantially amorphous. The composite electrical resistivity was observed to be anisotropic with a resistivity of 79 μΩ cm measured transverse to the extrusion axis in a sample with 75% amorphous volume fraction. A 0-3 connectivity pattern with the low-resistivity steel phase embedded in a 3-dimensionally connected high-resistivity bulk metallic glass phase was observed with scanning electron microscopy. This confirms that the flow characteristics of the bulk metallic glass and the steel powders were comparable during extrusion at these temperatures. The saturation magnetization of 1.3 T was consistent with the volume weighted average of the saturation magnetization of the two phases. A relatively high quasistatic coercivity of 8 Oe was measured and is likely due to slight crystallization of the bulk metallic glass as well as domain wall pinning at prior particle boundaries. Careful control of the thermal environment during the extrusion process is required to minimize glass crystallization and achieve the desired balance of magnetic and electrical properties.
机译:Fe基大块金属玻璃和低合金钢的软磁复合材料是通过在玻璃的过冷液体区域内的温度对前体粉末进行热共挤出而制造的。制造的复合材料的无定形体积分数分别为75%,67%和100%。观察到组成粉末的完全固结,而块状金属玻璃基本上保持非晶态。在具有75%无定形体积分数的样品中,观察到复合电阻率是各向异性的,横向于挤出轴测得的电阻率为79μΩcm。用扫描电子显微镜观察到0-3连接图案,其中低电阻钢相嵌入3维连接的高电阻体金属玻璃相中。这证实了在这些温度下的挤压过程中,大块金属玻璃和钢粉的流动特性是可比的。 1.3 T的饱和磁化强度与两相的饱和磁化强度的体积加权平均值一致。测得的相对较高的准静态矫顽力为8 Oe,这很可能是由于块状金属玻璃的轻微结晶以及先前粒子边界处的畴壁钉扎所致。需要在挤出过程中仔细控制热环境,以最大程度地减少玻璃结晶并达到所需的磁和电性能平衡。

著录项

  • 来源
    《Journal of Applied Physics》 |2013年第2期|17A307.1-17A307.3|共3页
  • 作者单位

    GE Global Research, Ceramic and Metallurgy Technologies, One Research Circle, Niskayuna, New Ynrk 12309, USA;

    GE Global Research, Ceramic and Metallurgy Technologies, One Research Circle, Niskayuna, New Ynrk 12309, USA;

    GE Global Research, Ceramic and Metallurgy Technologies, One Research Circle, Niskayuna, New Ynrk 12309, USA;

    GE Global Research, Ceramic and Metallurgy Technologies, One Research Circle, Niskayuna, New Ynrk 12309, USA;

    GE Global Research, Ceramic and Metallurgy Technologies, One Research Circle, Niskayuna, New Ynrk 12309, USA;

  • 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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