Поверхностная кристаллизация аморфных микропроводов состава Fe-=SUB=-73.8-=/SUB=-Si-=SUB=-13-=/SUB=-B-=SUB=-9.1-=/SUB=-Cu-=SUB=-1-=/SUB=-Nb-=SUB=-3.1-=/SUB=- и  Fe-=SUB=-77.5-=/SUB=-Si-=SUB=-13.5-=/SUB=-B-=SUB=-9-=/SUB=-

А.А. Фукс, Галина Евгеньевна Абросимова, О. И. Аксенов, А. С. Аронин
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Abstract

Amorphous microwires of Fe73.8Si13B9.1Cu1Nb3.1 and Fe77.5Si13.5B9 composition fabricated by the Ulitovsky–Taylor method were studied. The samples with the glass shell removed were heated at temperatures of 753 K and 703 K for 20 minutes, afterwards, their structure was examined using X-ray diffraction. Subsequently, the thermally treated samples were chemically etched and X-ray diffraction study of the structure was again carried out. Experimental results on the predominant crystallization of near-surface regions were discussed assuming that mechanical stresses affect the nucleation and growth of nanocrystals.
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研究了用Ulitovsky-Taylor法制备Fe73.8Si13B9.1Cu1Nb3.1和Fe77.5Si13.5B9非晶态微丝。在753 K和703 K的温度下加热20分钟,然后用x射线衍射检查其结构。随后,对热处理后的样品进行化学蚀刻,并对其结构进行x射线衍射研究。假设机械应力影响纳米晶体的成核和生长,讨论了近表面区域主要结晶的实验结果。
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