Amorphous Iron Formation by Discontinuous Rubbing

H. Furuichi
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Abstract

A unidirectional dry rubbing in a low vacuum, regularly separating \(\alpha\)-iron slider from \(\alpha\)-iron specimen generated a layer of piled-up adhered wear debris whose thickness was more than 100 \(\mu\)m. TEM diffraction patterns taken from this layer consist of large spots and halo rings. This seems to demonstrate the state just before the perfect amorphization. All the rings and spots correspond to the structure formed due to the occupancy of iron atoms in O and T sites of \(\varepsilon\)-iron. Neither this way of amorphization nor the occupied structure mentioned above has been reported. Both the amorphous state and the occupied structure remain at ambient conditions. The mechanism of high-pressure generation that transformed \(\alpha\)-iron to \(\varepsilon\)-iron is presented.
不连续摩擦形成非晶态铁
在低真空条件下单向干摩擦,将\(\alpha\) -铁滑块与\(\alpha\) -铁试样有规律地分离,形成一层堆积在一起的黏附磨损屑,其厚度大于100 \(\mu\) m。该层的TEM衍射图由大斑点和光环环组成。这似乎展示了完美无定形之前的状态。所有的环和斑点都对应于铁原子在\(\varepsilon\) -铁的O和T位点占据而形成的结构。这种非定形方式和上述占位结构均未见报道。非晶态和占位结构都保持在环境条件下。介绍了高压生成将\(\alpha\) -铁转化为\(\varepsilon\) -铁的机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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