加工驱动的化学排序及其对高熵合金磁性能的影响。

IF 3.1 3区 化学 Q2 CHEMISTRY, PHYSICAL
V Chaudhary, S Dasari, A Sharma, R V Ramanujan, R Banerjee
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引用次数: 0

摘要

研究了Al0.2Ti0.3Co1.5CrFeNi1.5高熵合金(HEA)在溶液退火、750℃退火和冷轧加退火三种不同的微观组织条件下,化学有序及其长度尺度对其磁性行为的影响。这些加工路线产生了L12有序析出相的体积分数、尺寸和形态的变化,并在退火状态下形成了少量的L21相。在2 K和300 K之间进行的磁测量显示,在三种条件下,饱和磁化强度、矫顽力和磁转变温度存在明显差异。溶液退火条件下,在48k附近呈现单磁跃迁,矫顽力低,与L12相的精细分散相一致。在退火和冷轧条件下,L12相的粗化和形态演变导致在较低温度下出现第二次磁转变,这是由于析出相的部分磁去耦。在这些条件下,矫顽力显著增加是由于增强的畴壁钉钉,而300 K时的残余迟滞是由于晶界处少量L21相和冷加工条件下的显微组织特征的结合。这些结果表明,化学有序及其结构演化在控制该合金体系的低温磁性行为中起着核心作用。这些发现有助于更广泛地了解多功能HEAs,它结合了可调的磁性能和优异的机械性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Processing-driven chemical ordering and its effect on magnetic properties in a high entropy alloy.

The influence of chemical ordering and its length scale on the magnetic behaviour of the Al0.2Ti0.3Co1.5CrFeNi1.5 high entropy alloy (HEA) was investigated across three distinct microstructural conditions, including a solution annealed state, an annealed condition at 750 °C, and a cold rolled plus annealed condition. These processing routes produced changes in the volume fraction, size, and morphology of L12 ordered precipitates along with the formation of a minor L21 phase in the annealed states. Magnetic measurements performed between 2 K and 300 K revealed clear differences in saturation magnetization, coercivity, and magnetic transition temperatures across the three conditions. The solution annealed condition exhibited a single magnetic transition near 48 K and low coercivity, consistent with a fine dispersion of coherent L12 precipitates. In the annealed and cold rolled conditions, coarsening and morphological evolution of the L12 phase led to the emergence of a second magnetic transition at lower temperatures, attributed to partial magnetic decoupling of the precipitates. Coercivity increased significantly in these conditions due to enhanced domain wall pinning, while residual hysteresis at 300 K is attributed to a combination of minor L21 phase at grain boundaries and microstructural features in the cold-worked condition. These results demonstrate that chemical ordering and its structural evolution play a central role in governing low temperature magnetic behaviour in this alloy system. The findings contribute to the broader understanding of multifunctional HEAs that combine tunable magnetic properties with excellent mechanical performance.

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来源期刊
Faraday Discussions
Faraday Discussions 化学-物理化学
自引率
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259
期刊介绍: Discussion summary and research papers from discussion meetings that focus on rapidly developing areas of physical chemistry and its interfaces
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