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Kinetic Analysis of Compositional Changes in Inclusions during Ladle Refining

机译:钢包精炼过程中夹杂物成分变化的动力学分析

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It is well known that the composition of inclusions is determined by alloying elements and by reaction with slag. For example, MgO·Al_(2)O_(3) spinel-type inclusions form, even though Mg is not added, due to the supply of Mg through the reaction between slag and metal. To clarify the mechanism of compositional changes in inclusions, the authors have developed a kinetic model to simulate the reactions during the ladle refining process. In this study, experiments were conducted using an induction furnace, and the compositional changes in molten steel, slag, and inclusions were investigated. The inclusions were analyzed by P-SEM, which incorporates an automatic analysis system. By the application of the developed simulation model to these experiments, the validity of the model was evaluated. The inclusion composition gradually changed from Al_(2)O_(3) to MgO·Al_(2)O_(3) after the addition of Al, and the inclusions originating from slag were also observed at all times. The compositional change of the deoxidation product by the model calculation corresponded well to the observed variation in the composition of inclusions, and the calculated composition of inclusions originating from slag also agreed with the experimental results. The rate of compositional change increased with increasing Ar gas flow rate, and this tendency was captured well by the model. Therefore, the validity of the developed model is considered to be confirmed.
机译:众所周知,夹杂物的组成是由合金元素和与炉渣反应所决定的。例如,由于通过炉渣与金属之间的反应而供给Mg,因此即使不添加Mg,也形成MgO·Al_(2)O_(3)尖晶石型夹杂物。为了阐明夹杂物中成分变化的机理,作者开发了动力学模型来模拟钢包精炼过程中的反应。在这项研究中,使用感应炉进行了实验,并研究了钢水,炉渣和夹杂物中的成分变化。通过包含自动分析系统的P-SEM分析夹杂物。通过将开发的仿真模型应用于这些实验,评估了模型的有效性。添加Al后,夹杂物组成从Al_(2)O_(3)逐渐变为MgO·Al_(2)O_(3),并且始终观察到来自炉渣的夹杂物。通过模型计算得出的脱氧产物的组成变化与所观察到的夹杂物组成的变化非常吻合,并且计算出的源自炉渣的夹杂物的组成也与实验结果一致。随着Ar气体流速的增加,成分变化的速率也随之增加,该趋势被模型很好地捕获了。因此,可以认为已开发模型的有效性。

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