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Magnetic force microscopy study of heat-treated Fe_(81)Ga _(19) with different cooling rates

机译:不同冷却速率的热处理Fe_(81)Ga _(19)的磁力显微镜研究

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摘要

Phase constitution and domain structures of heat-treated Fe _(81)Ga_(19) cooled from 800 °C at different rates have been studied by X-ray diffraction (XRD) and magnetic force microscopy (MFM). Heat-treated samples were annealed at 800 °C for 3 h, followed by water quenching, air cooling (~ 160 °C/min), furnace cooling (~ 5 °C/min) and slow cooling (0.1 °C/min). Both the as-quenched and air-cooled Fe_(81)Ga_(19) had a single disordered bcc A2 phase, but exhibited obvious difference in alignment of stripe domains. Dendrite domains were observed in the furnace-cooled sample with the formation of the ordered DO_3 phase in the A2 matrix. For the slow-cooled Fe81Ga19 sample, L12 phase was found to be precipitated and showed a plate domain structure with a relatively weaker contrast. The great thermal history dependence of the initial domain structure of Fe_(81)Ga_(19) samples is considered to be responsible for the change in their magnetostrictive behaviors.
机译:通过X射线衍射(XRD)和磁力显微镜(MFM)研究了以不同速率从800℃冷却的Fe_(81)Ga_(19)热处理后的相组成和畴结构。热处理后的样品在800°C下退火3 h,然后进行水淬,空冷(〜160°C / min),炉冷(〜5°C / min)和缓慢冷却(0.1°C / min) 。淬火和风冷的Fe_(81)Ga_(19)都具有一个无序的bcc A2相,但在条带结构的排列上却表现出明显的差异。在炉冷样品中观察到枝晶域,在A2基质中形成有序的DO_3相。对于慢冷的Fe81Ga19样品,发现L12相析出并显示出板域结构,其对比度相对较弱。 Fe_(81)Ga_(19)样品的初始畴结构对热历史的依赖性很大,被认为是其磁致伸缩行为变化的原因。

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