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Thermodynamic Fundamentals for Alumina-content Control of Oxide Inclusions in Mn-Si Deoxidation of Molten Steel

机译:钢水锰硅脱氧中氧化物夹杂物氧化铝含量控制的热力学基础

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In the deoxidation producing the MnO-SiO_2-Al_2O_3 inclusions, the significant ununiformity in the temperature dependence of equilibrium constant among the deoxidation reactions may cause the inclusions to change in their composition in cooling processes till solidification of steel melt. The present work concerns the compositional variation of the inclusions formed in the Mn-Si deoxidation of steel. focused on alumina content in the cooling process form 1848 to 1773K. In order to take the mass balances of the components involved in a reaction system, a reaction region was introduced which consisted of liquid steel bath and a certain amount of the oxides belonging to added flux and refractory of refining vessels. The compositional variation of the inclusions was estimated on the basis of the deoxidation equilibria and the mass balances. The thermodynamic analysis has revealed that the composition of inclusions has such a temperature dependence as to be considerably influenced by the initial total contents of reactants involved in the deoxidation system. It is suggested that high total contents of aluminum and oxygen in the initial state reduce the temperature dependence and thereby will facilitate the composition control in the cooling process till solidification.
机译:在产生MnO-SiO_2-Al_2O_3夹杂物的脱氧过程中,脱氧反应之间平衡常数对温度的依赖性显着不均匀,这可能导致夹杂物在冷却过程中改变其成分,直至钢水凝固。本工作涉及在钢的Mn-Si脱氧中形成的夹杂物的成分变化。着重于1848至1773K冷却过程中的氧化铝含量。为了平衡反应体系中各组分的质量平衡,引入了一个反应区域,该区域由液态钢浴和一定量的属于添加的熔剂和精炼容器耐火材料的氧化物组成。根据脱氧平衡和质量平衡估算夹杂物的组成变化。热力学分析表明,夹杂物的组成具有温度依赖性,从而很大程度上受到脱氧系统中所含反应物初始总含量的影响。建议在初始状态下较高的铝和氧总含量降低温度依赖性,从而有助于冷却过程中直至凝固的成分控制。

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