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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effect of Zr on the microstructure, magnetic domain structure, microchemistry and magnetic properties in Sm(CobalCu0.08Fe0.10Zrx)(8.5) magnets
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Effect of Zr on the microstructure, magnetic domain structure, microchemistry and magnetic properties in Sm(CobalCu0.08Fe0.10Zrx)(8.5) magnets

机译:Zr对Sm(CobalCu0.08Fe0.10Zrx)(8.5)磁体的微观结构,磁畴结构,微观化学和磁性能的影响

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摘要

The effect of Zr on the microstructure, microchemistry and coercivity of Sm(CobalCu0.08Fe0.10Zrx)(8.5) (x = 0-0.10) magnets has been systematically investigated. The presence of Zr is responsible for the formation of the lamella structure. With increasing Zr content, a cellular-like structure gradually develops while the density of the lamella phase increases. A proper Zr content (0.015-0.060 at.%) is the key to form a complete and uniform cellular structure. Microchemistry data show that the Cu content in the cell boundaries in the magnet with 0.04 at.% Zr is higher than that with 0.015 at.% Zr, although both samples have similar microstructure morphologies. Higher coercivity is obtained in samples where the domain walls (DWs) are pinned at cell boundaries. For Zr-free or higher Zr samples, DWs nucleated at grain boundaries are responsible for the reduction in coercivity. During isothermal ageing, at a fixed Zr content, the coercivity is developed with increasing ageing time. These results clearly show that Zr plays an important role in the formation of a uniform cellular structure with the right microchemistry and that a critical amount of Zr is needed for the optimum magnetic properties.
机译:已经系统地研究了Zr对Sm(CobalCu0.08Fe0.10Zrx)(8.5)(x = 0-0.10)磁体的微观结构,微观化学和矫顽力的影响。 Zr的存在负责形成薄片结构。随着Zr含量的增加,层状相的密度增加时,逐渐形成蜂窝状结构。适当的Zr含量(0.015-0.060 at。%)是形成完整而均匀的细胞结构的关键。微量化学数据表明,尽管Zr含量为0.04 at。%,磁体中晶胞边界中的Cu含量高于Zr含量为0.015 at。%,但两种样品的微观结构形态相似。在将畴壁(DW)固定在单元边界的样本中,可以获得更高的矫顽力。对于无Zr或更高Zr样品,在晶界成核的DW导致矫顽力降低。在等温老化过程中,在固定的Zr含量下,矫顽力随老化时间的增加而发展。这些结果清楚地表明,Zr在形成具有正确的微化学作用的均匀细胞结构中起着重要作用,并且需要临界量的Zr才能获得最佳的磁性。

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