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Role of disorder when upscaling magnetocaloric Ni-Co-Mn-Al Heusler alloys from thin films to ribbons

机译:无序在将磁热Ni-Co-Mn-Al Heusler合金从薄膜升级为带材时的作用

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摘要

Research in functional magnetic materials often employs thin films as model systems for finding new chemical compositions with promising properties. However, the scale-up of thin films towards bulk-like structures is challenging, since the material synthesis conditions are entirely different for thin films and e.g. rapid quenching methods. As one of the consequences, the type and degree of order in thin films and melt-spun ribbons are usually different, leading to different magnetic properties. In this work, using the example of magnetocaloric Ni-Co-Mn-Al melt-spun ribbons and thin films, we show that the excellent functional properties of the films can be reproduced also in ribbons, if an appropriate heat treatment is applied, that installs the right degree of order in the ribbons. We show that some chemical disorder is needed to get a pronounced and sharp martensitic transition. Increasing the order with annealing improves the magnetic properties only up to a point where selected types of disorder survive, which in turn compromise the magnetic properties. These findings allow us to understand the impact of the type and degree of disorder on the functional properties, paving the way for a faster transfer of combinatorial thin film research towards bulk-like materials for magnetic Heusler alloys.
机译:功能性磁性材料的研究通常采用薄膜作为模型系统,以寻找具有良好性能的新化学成分。但是,由于薄膜的材料合成条件是完全不同的,例如,对于薄膜状结构,将薄膜放大到块状结构是有挑战性的。快速淬火方法。后果之一是,薄膜和熔纺带的顺序类型和程度通常不同,从而导致不同的磁性能。在这项工作中,以磁热Ni-Co-Mn-Al熔纺带和薄膜为例,我们表明,如果进行适当的热处理,则膜的优异功能特性也可以在带中再现。在功能区中安装正确的顺序。我们表明需要某种化学紊乱才能获得明显而尖锐的马氏体转变。随着退火顺序的增加,磁性能只会提高到选定的无序类型得以幸存的程度,进而损害磁性能。这些发现使我们能够了解无序的类型和程度对功能特性的影响,从而为将组合薄膜研究更快地转移到磁性Heusler合金的块状材料铺平了道路。

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