纳米FeAl合金在无序和热恢复过程中的结构、力学和磁性能

X. Amils , J. Nogués , S. Suriñach , J.S. Muñoz , L. Lutterotti , S. Gialanella , M.D. Baró
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引用次数: 25

摘要

研究了Fe-40Al球磨和退火后的% B2合金的显微组织、力学性能和磁性能。失序过程的特征是合金硬化和准铁磁转变,这主要取决于晶粒细化和反位缺陷的产生。重排序过程显示出纳米晶合金的持续软化和顺磁状态的恢复,这主要是由反位缺陷的湮灭控制的。显微组织、力学性能和磁性能之间的相关性使磁测量成为研究FeAl纳米晶合金显微组织和力学状态的一种合适的、非破坏性的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural, mechanical and magnetic properties of nanostructured FeAl alloys during disordering and thermal recovery

The microstructural, mechanical and magnetic properties of the ball milled and annealed Fe-40Al at% B2 alloys have been studied. The disordering process is characterized by an alloy hardening and a para-ferromagnetic transition, which depend mainly on the grain refinement and the creation of antisite defects. The reordering process shows a continuous softening of the nanocrystalline alloy and the recovery of the paramagnetic state, which is essentially governed by the annihilation of antisite defects. The correlation between the microstructural, mechanical and magnetic properties make magnetic measurements a suitable, non-destructive, tool to study the microstructural and mechanical state of FeAl nanocrystalline alloys.

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