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Interfacial Reactions and Inclusion Formations at an Early Stage of FeNb Alloy Additions to Molten Iron

机译:FENB合金的早期界面反应和包涵体形成到熔融铁

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Nb is an important microalloying element in steelmaking. Its interaction with liquid Fe during an early stage of the alloying process has a considerable influence on the Nb recovery. In the present work, the inclusions in FeNb alloys were characterized using the electrolytic extraction method combined with SEM-EDS. The interfacial reactions between FeNb alloy and liquid Fe, as well as inclusion formations, were studied during an early stage of an alloy addition using a liquid-metal-suction method. The results revealed that a diffusion zone consisting of different regions of Fe–Nb phases was formed and that the thickness of the zone increased with time. Based on the experimental findings, the mechanism of the early dissolution process of FeNb alloys in liquid Fe was discussed. Moreover, the Nb rich regions formed after the alloy contacted with liquid Fe could modify the existing inclusions in the alloy, also their evolution mechanisms were studied. The addition of FeNb alloys can introduce inclusions, such as Al–O and Al–Ti–Nb–O inclusions to the liquid steel. Overall, this study has contributed to the understanding the behaviour of impurities from the FeNb source at the early dissolution process during the microalloying process of steels containing Nb.
机译:NB是炼钢中的重要微合金元件。其在合金化方法的早期阶段与液体Fe的相互作用对Nb恢复具有相当大的影响。在本作工作中,使用电解萃取方法与SEM-EDS结合的特征在于FENB合金的夹杂物。在使用液态金属 - 抽吸方法的合金添加的早期阶段,研究了FENB合金和液体Fe之间的界面反应以及包含的形成。结果表明,形成由Fe-Nb相的不同区域组成的扩散区,并且该区域的厚度随时间而增加。基于实验结果,讨论了液体Fe中FENB合金早期溶解过程的机理。此外,在与液体Fe接触后形成的NB富株区域可以改变合金中的现有夹杂物,因此研究了它们的进化机制。添加FENB合金可以将夹杂物引入液体钢中的夹杂物,例如Al-O和Al-Ti-Nb-O夹杂物。总体而言,本研究有助于了解含有NB的钢的微合金处理过程中早期溶解过程的FENB源的杂质的行为。

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