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首页> 外文期刊>Journal of magnetism and magnetic materials >Microstructure and magnetic properties of MnBi alloys with high coercivity and significant anisotropy prepared by surfactant assisted ball milling
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Microstructure and magnetic properties of MnBi alloys with high coercivity and significant anisotropy prepared by surfactant assisted ball milling

机译:表面活性剂辅助球磨制备的高矫顽力和各向异性大的MnBi合金的组织和磁性

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摘要

MnBi alloys with high content of low temperature phase (LTP) MnBi and excellent magnetic properties were prepared by surfactant assistant ball milling (SABM), using annealed ribbons as precursors. Effects of the SABM processes on the phase constituent, microstructure, and magnetic properties were investigated in detail. It is found that the reduction of saturation magnetization is mainly attribute to the decomposition of LTP MnBi into Mn phase, Bi phase and MnO phase, with increasing the ball milling time. Meanwhile, due to the fine grain size and increased magnetic isolation effects between LTP MnBi grains, the coercivity increases monotonously with prolonging the ball milling time to 10 h for Mn55Bi45 powders. Through compression molding under the magnetic field, based on the SABM powders, the optimum anisotropic bonded magnet displays the maximum energy product (BH)(max) of 9.06 MGOe at room temperature, and a value of 7.05 MGOe at 380 K can be still achieved. In addition, the magnetic hardening mechanism of bonded magnets can be well explained by the strong pinning model. Strongly favorable magnetic properties make bonded MnBi magnets an attractive candidate material for small permanent magnets used for temperature applications up to 380 K.
机译:采用退火带作为前驱体,通过表面活性剂辅助球磨(SABM)制备了具有高含量的低温相(LTP)MnBi和优异的磁性的MnBi合金。详细研究了SABM工艺对相组成,微结构和磁性能的影响。研究发现,随着球磨时间的增加,饱和磁化强度的降低主要归因于LTP MnBi分解为Mn相,Bi相和MnO相。同时,由于细晶粒尺寸和LTP MnBi晶粒之间的磁隔离作用增强,矫顽力随着Mn55Bi45粉末的球磨时间延长至10 h而单调增加。通过在磁场下压缩成型,基于SABM粉末,最佳各向异性粘结磁体在室温下显示出9.06 MGOe的最大能量乘积(BH)(max),而在380 K时仍可达到7.05 MGOe的值。此外,强钉扎模型可以很好地说明粘结磁体的磁硬化机理。强大的磁性使粘结的MnBi磁体成为用于温度高达380 K的小型永磁体的有吸引力的候选材料。

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