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Initial stage of mechanical alloying in the Fe-C system

机译:Fe-C系统中机械合金化的初始阶段

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Moessbauer spectroscopy (MS), X-ray diffraction, transmission electron microscopy (TEM), Auger spectroscopy, magnetic measurements and differential thermal analysis (DTA) were used to study the initial stages of mechanical alloying in the Fe-C system. The mechanical alloying of Fe and C powder mixtures with the atomic ratio 85:15 in a planetary ball mill was taken as an example. It has been shown that the initial stage involves the formation of nanostructure in the α-Fe particles, penetration and segregation of carbon along the α-Fe grain boundaries, formation of the amorphous Fe-C phase in the interface regions consisting of the boundary and close-to-boundary distorted zone. The carbon concentration in the amorphous Fe-C phase is estimated at 25 at.%. The amount of the amorphous phase reaches 67 at.% (67% of all the Fe and C atoms are in this phase).
机译:Moessbauer光谱(MS),X射线衍射,透射电子显微镜(TEM),Auger光谱,磁测量和差热分析(​​DTA)用于研究Fe-C系统中机械合金化的初始阶段。以原子比为85:15的Fe和C粉末混合物在行星式球磨机中的机械合金化为例。已经表明,初始阶段涉及在α-Fe颗粒中形成纳米结构,沿着α-Fe晶界的碳渗透和偏析,在由晶界和晶界组成的界面区域中形成非晶Fe-C相。接近边界的变形区。估计非晶态Fe-C相中的碳浓度为25 at。%。非晶相的含量达到67at。%(所有Fe和C原子中的67%在该相中)。

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