论文标题

用于磁性氢液化器的巨型磁平衡复合HOB2的气体颗粒

Gas-atomized particles of giant magnetocaloric compound HoB2 for magnetic hydrogen liquefiers

论文作者

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

论文摘要

将有希望的磁电材料加工成球体是开发高性能磁制冷系统的重要问题之一。在本研究中,我们通过无被坩埚的气雾化过程生产巨型磁联化合物HOB2的球形颗粒,尽管其高熔点为2350C。粒径分布的范围为100至710微米,范围为100至710微米,范围为212-355微米,最高含量为14-20WT的系统,该系统最高的含量为14-20WT%,适用于熔融电极的14-20WT%。在处理过程中,大多数所得颗粒主要是球形的,没有污染,而在表面和内部则观察到独特的微观结构。这些球形颗粒表现出急剧的磁过渡和0.34 J CM^{ - 3} k^{ - 1}的巨大磁熵变化,对于15.5 K时的磁场变化为5 t。高球形和高磁化性能表明,HOB2气化颗粒具有良好的磁性燃料式抗逆转录剂的潜力,可用于抗磁性抗磁力机。

The processing of promising magnetocaloric materials into spheres is one of the important issues on developing high-performance magnetic refrigeration systems. In the present study, we achieved in producing spherical particles of a giant magnetocaloric compound HoB2 by a crucible-free gas atomization process, despite its high melting point of 2350 C. The particle size distribution ranges from 100 to 710 micrometers centered at 212-355 micrometers with the highest yield of 14-20wt% of total melted electrode, which is suitable for magnetic refrigeration systems. The majority of the resulting particles are mostly spherical with no contamination during the processing, while unique microstructures are observed on the surface and inside. These spherical particles exhibit sharp magnetic transitions and huge magnetic entropy change of 0.34 J cm^{-3} K^{-1} for a magnetic field change of 5 T at 15.5 K. The high sphericality and the high magnetocaloric performance suggest that the HoB2 gas-atomized particles have good potential as magnetic refrigerants for use in magnetic refrigerators for hydrogen liquefaction.

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