论文标题

通过电极感应熔化气雾化制备的薰衣草相的磁平衡颗粒

Magnetocaloric particles of the Laves phase compound HoAl2 prepared by electrode induction melting gas atomization

论文作者

Yamamoto, Takafumi D., Takeya, Hiroyuki, Saito, Akiko T., Terashima, Kensei, Numazawa, Takenori, Takano, Yoshihiko

论文摘要

将磁电材料加工成磁性制冷剂颗粒是开发高性能磁性冰箱的重要问题。在这里,我们通过基于电极感应熔化气雾化过程的新设计的方法稳定地生产了有希望的材料HOAL2的磁化颗粒。粒径范围在亚毫米级的顺序上,适用于实用的制冷系统。所产生的污染物较少的颗粒具有良好的形态学,磁性和磁性特性:(i)几乎几乎没有内部毛孔的球形形状,(ii)在30 K附近的急剧铁磁过渡和(iii)具有与大量相反方面相当的巨大磁化效果。这些功能表明Hoal $ _ {2} $气体颗粒具有用作磁性制冷剂的潜力。提出的方法不仅可以应用于HOAL2,还可以应用于具有高熔点的其他脆性磁静电材料,从而促进了开发用于氢液化的磁性冰箱所需的各种磁性制冷剂的产生。

Processing magnetocaloric materials into magnetic refrigerant particles is an essential issue in developing high-performance magnetic refrigerators. Here, we succeed in stably producing magnetocaloric particles of the promising material HoAl2 by a newly devised method based on electrode induction melting gas atomization process. The particle size range is on the order of submillimeter, which is suitable for practical refrigeration systems. The resulting particles with less contamination have good morphological, magnetic, and magnetocaloric properties: (i) almost spherical shapes with few internal pores, (ii) a sharp ferromagnetic transition around 30 K, and (iii) a large magnetocaloric effect comparable to the bulk counterpart. These features suggest the HoAl$_{2}$ gas-atomized particles have the potential of use as a magnetic refrigerant. The presented method can be applied not only to HoAl2 but also to other brittle magnetocaloric materials with high melting points, facilitating the production of various magnetic refrigerants needed to develop magnetic refrigerators for hydrogen liquefaction.

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