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Reaction Behaviour between Cerium Ferroalloy and Molten Steel during Rare Earth Treatment in the Ultra-low Carbon Al-killed Steel

机译:超低碳酸钢稀土处理期间铈铁合金和钢水之间的反应行为

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In this work, the melting process and reaction behaviour of cerium ferroalloy in the liquid ultra-low carbon interstitial free steel was investigated through a special designed hot crucible experiment using standard metallographic techniques including SEM, EDS, XRF, and XRD in combination with the thermodynamic software FactSage 7.2. The evolution mechanism of cerium-containing phases in the cerium ferroalloy during the melting process was proposed. The cerium-containing phases stretched and migrated along the direction of heat flow, in further the arms of the network structures became thinner and finally dissolved into the molten steel. It was concluded that the thinner of network structures’ arms, the higher of the Ce content in cerium-containing phases. During the melting process, the cerium content in the cerium-enriched phase was increased from 43.9 wt% in the matrix of the cerium ferroalloy to 90.44 wt% in the reaction zone, and the average width of the network arms was decreased from 18 μ m to 2 μ m accordingly. The main reaction products in the interface among cerium ferroalloy, molten steel, and slag were Ce_(2)O_(3) and CeAlO_(3).
机译:在这项工作中,通过使用标准金相技术的特殊设计的热坩埚实验研究了液体超低碳间隙自由钢中铈铁合金的熔融过程和反应行为,包括SEM,EDS,XRF和XRD,与热力学相结合软件事实7.2。提出了在熔融过程中铈铁合金中含铈相的含量的进化机制。含铈的相拉伸和沿热流方向迁移,进一步沿网络结构的臂变薄,最终溶解在钢水中。结论是网络结构较薄的倍数,含铈相中的CE含量越高。在熔化过程中,富集的铈中的铈含量在反应区中铈铁合金基质中的43.9wt%增加到90.44wt%,并且网络臂的平均宽度从18℃下降>μm至2 μm。在铈铁合金,钢水和渣中的界面中的主要反应产物是Ce_(2)O_(3)和Cealo_(3)。

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