首页> 外文期刊>Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites >Effects of heavy rare-earth addition on glass-forming ability, thermal, magnetic, and mechanical properties of Fe-RE-B-Nb (RE = Dy, Ho, Er or Tm) bulk metallic glass
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Effects of heavy rare-earth addition on glass-forming ability, thermal, magnetic, and mechanical properties of Fe-RE-B-Nb (RE = Dy, Ho, Er or Tm) bulk metallic glass

机译:Fe-Re-B-Nb(Re = Dy,HO,ER或TM)散装金属玻璃的玻璃形成能力,热,磁性和力学性能的重稀土添加对玻璃形成能力的影响

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摘要

With the aim of investigating how the species of doped rare-earth (RE) elements affect the glass-forming ability (GFA), 5 at. % RE elements were added in Fe71Nb6B23 alloy to substitute Fe. Compared with the Fe66RE5 Nb6B23 (RE = Ho or Dy), Fe66RE5 Nb6B23 (RE = Er or Tm) possesses an extra competitive Fe3B crystallization phase, which leads to a better GFA by stabilizing the liquid phase structure. Moreover, Fe66RE5 Nb6B23 shows the lowest density of states near the Fermi level among four alloys, which contributes to its best GFA. The influences of RE addition on the thermal, magnetic, and mechanical behaviors were also investigated. With increasing atomic number of RE elements from Dy to Tm, the saturation magnetic flux density increases obviously accompanied by the improved flowability in the supercooled liquid region, which makes Fe66Tm5Nb6B23 as a potential functional soft-magnetic material for thermoplastic machining.
机译:旨在研究掺杂稀土(RE)元素的物种如何影响玻璃形成能力(GFA),5at。 在Fe71NB6B23合金中加入%RE元素以替代Fe。 与FE66RE5 NB6B23(RE = HO或Dy)相比,FE66RE5 NB6B23(RE = ER或TM)具有额外的竞争FE3B结晶阶段,通过稳定液相结构,导致更好的GFA。 此外,FE66RE5 NB6B23显示了四种合金中FERMI水平附近的最低密度,这有助于其最佳GFA。 还研究了重新加法对热,磁性和机械行为的影响。 随着从DY至TM的RE元件的增加,饱和磁通密度明显增加,伴随着超冷却液区域中的改善流动性,这使得FE66TM5NB6B23作为热塑性加工的潜在功能软磁材料。

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