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首页> 外文期刊>Journal of Mining and Metallurgy, Section B: Metallurgy >Mechanical alloying of iron-coated NbC and Si in stirred media mill
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Mechanical alloying of iron-coated NbC and Si in stirred media mill

机译:搅拌介质磨中铁包NbC和Si的机械合金化

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In the current research, the effect of mechanical alloying (MA) of iron-coated NbC and Si on the material’s fineness and crystal structure was investigated. The MA experiments were carried out in a batch-type laboratory scale stirred media mill for various residence times up to 240 min in isopropanol. During MA, milling energy was measured, and stress energy (SE) was calculated. Morphology and material structural changes, during the mechanical alloying process, were determined by means of scanning electron microscopy (SEM) and powder X-ray diffraction (XRD), respectively. The particle size distribution of the product was measured by a Horiba 950 LA laser particle size analyser. Evolution of phases during highenergy milling of NbC, Al-Fe-carbide, Fe, and Si was studied as a function of specific milling energy. Transformations in the crystal structure were revealed, namely the generation of cementite and Nb-Si-carbide, which was proved by XRD results and thermodynamic calculations. As result of the experiments, optimum MA conditions were determined. The application of the mechanical alloying method gives the opportunity to produce nanocrystalline phase from the initial ironcoated NbC and Si powder.
机译:在当前的研究中,研究了涂有铁的NbC和Si的机械合金化(MA)对材料的细度和晶体结构的影响。 MA实验是在间歇式实验室规模的搅拌介质磨中进行的,在异丙醇中的各种停留时间长达240分钟。在MA期间,测量铣削能量,并计算应力能(SE)。在机械合金化过程中,分别通过扫描电子显微镜(SEM)和粉末X射线衍射(XRD)来确定形态和材料结构变化。通过Horiba 950 LA激光粒度分析仪测量产物的粒度分布。研究了NbC,Al-Fe-碳化物,Fe和Si的高能铣削过程中相的演变,它是比铣削能量的函数。揭示了晶体结构的转变,即渗碳体和Nb-Si-碳化物的生成,这通过XRD结果和热力学计算证明。作为实验的结果,确定了最佳的MA条件。机械合金化方法的应用提供了从初始铁涂层NbC和Si粉末生产纳米晶相的机会。

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