论文标题

通过ERCO2雾化颗粒中的热退火来调谐磁和磁化特性

Tunable magnetic and magnetocaloric properties by thermal annealing in ErCo2 atomized particles

论文作者

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

论文摘要

将磁电材料加工成具有适当形状的磁制冷剂,对于磁制冷系统的发展至关重要。在这种情况下,加工对磁电材料物理特性的影响是重要的问题之一。在这里,我们研究了金属层间化合物Erco $ _ {2} $的气体颗粒的晶体学,磁性和磁性特性,这是一种用于低温应用的巨型磁磁材料。结果表明,通过雾化和随后的热退火,ERCO $ _ {2} $的物理性质显着更改。在ASAT的颗粒中,磁过渡温度从34 k升高到56 K,并且相变从一阶变为二阶。热退火将过渡温度转移到原始温度并恢复一阶相变特征。磁性特性的变化与晶体学特性密切相关,这表明磁结构耦合的重要性。磁熵更改粒子的$-ΔS_{M} $,可以根据退火条件调整大小,形状和峰值温度。 $-ΔS_{M} $的峰值在9--33 J kg $^{ - 1} $ k $^{ - 1} $的磁场变化0--5 t的范围内。所有ERCO $ _ {2} $ atomized粒子的所有ERCO $ _ {2} $均具有与其他有希望的candigation consigation consigation consigation conterige consigation conterigant conterige confratige confratige confratige confratige cromptrige cromptry cromptrate cromptation cromptry cromptrate cromptratection。

Processing magnetocaloric materials into magnetic refrigerants with appropriate shapes is essential for the development of magnetic refrigeration systems. In this context, the impact of processing on the physical properties of magnetocaloric materials is one of the important issues. Here, we investigate the crystallographic, magnetic, and magnetocaloric properties of gas-atomized particles of the intermetallic compound ErCo$_{2}$, a giant magnetocaloric material for low-temperature applications. The results demonstrate that the physical properties of ErCo$_{2}$ are significantly changed by atomization and subsequent thermal annealing. In the as-atomized particles, the magnetic transition temperature increases from 34 to 56 K and the phase transition changes from first order to second order. The thermal annealing shifts the transition temperature back to the original one and restores the first-order phase transition characteristic. The changes in magnetic properties are closely related to those in crystallographic properties, suggesting the importance of the magneto-structural coupling. The magnetic entropy change $-ΔS_{M}$ of the particles can be tuned in size, shape, and peak temperature depending on the annealing conditions. The peak value of $-ΔS_{M}$ varies in the range of 9--33 J kg$^{-1}$ K$^{-1}$ for a magnetic field change of 0--5 T. All the ErCo$_{2}$ atomized particles have magnetocaloric properties comparable or superior to other promising candidates for low-temperature magnetic refrigerants.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源