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Fe-VC-Fe_3C Nanocomposites Produced by Mechanical Synthesis from Various Starting Components

机译:机械合成多种起始组分制备的Fe-VC-Fe_3C纳米复合材料

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摘要

Methods of X-ray diffraction, Mossbauer spectroscopy, and electron and atomic force microscopy have been used to study the sequence of structural and phase transformations upon mechanical alloying, annealing, and compacting of iron-vanadium-carbon alloys produced from mixtures of various compositions, such as powders of Fe (70 at %) and VC (30 at %); powders of pure elements of Fe (70 at %), V (15 at %), and graphite (15 at %); powders of Fe (70 at %) and V (15 at %) and toluene. It has been shown that in all cases the mechanical alloying results in the formation of nanocomposite powders with a complex phase composition representing a mixture of an a-Fe-based solid solution, carbide-based X-ray amorphous phase, and vanadium carbide VC. The annealing and compacting lead to the formation of an Fe-VC-Fe_3C nanocomposite. The use of liquid organic media as the source of carbon makes it possible to obtain materials with a narrow grain-size distribution and a uniform spatial distribution of carbide phases, which results in high values of microhardness, to 12 GPa.
机译:X射线衍射,Mossbauer光谱和电子和原子力显微镜的方法已用于研究由各种成分的混合物制成的铁钒碳合金进行机械合金化,退火和压紧后的结构和相变的顺序,如Fe(70at%)和VC(30at%)的粉末;铁(70at%),钒(15at%)和石墨(15at%)的纯元素粉末; Fe(70at%)和V(15at%)和甲苯的粉末。已经表明,在所有情况下,机械合金化均导致形成具有复合相组成的纳米复合粉末,所述复合相表示基于α-Fe的固溶体,基于碳化物的X射线非晶相和碳化钒VC的混合物。退火和压实导致形成Fe-VC-Fe_3C纳米复合材料。使用液态有机介质作为碳源,可以获得具有窄的晶粒尺寸分布和均匀的碳化物相空间分布的材料,这导致了高达12 GPa的显微硬度值。

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