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Mechanism of Reaction between Refractory Materials and Aluminum Deoxidised Molten Steel

机译:耐火材料与铝脱氧钢液反应的机理

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The conditions of formation of inclusions in steel during ladle refining in MgO-C lined ladles were investigated. From the experimental results as well those of a thermodynamic study conducted in parallel, the following conclusions can be made about the reaction mechanism between the MgO-C refractory and aluminum deoxidised molten steel: 1. an internal oxidation-reduction occurs in the MgO-C refractory and aluminum deoxidised molten steel during ladle refining; 2. the formation of a thin oxide layer at the interface is due to the reaction between magnesium vapour and aluminum dissolved into the molten steel and the CO(g) generated by the reaction between MgO and C in the crucible walls; 3. the oxide inclusions formed in the steel have been shown to consist mainly of MgO, Al_2O_3 or a mixture of them; 4. some of the finest inclusions are believed to be formed as secondary inclusions during cooling and solidification of the steel, and are connected only with the diffusion of magnesium from the crucible to the molten steel. 5. thermodynamic calculations indicate that during vacuum refining, as the pressure decreases, the chemical compatibility of carbon-bonded magnesia for ladle lining decreases.
机译:研究了MgO-C内衬钢包精炼过程中钢中夹杂物的形成条件。根据实验结果以及平行进行的热力学研究,可以得出关于MgO-C耐火材料与铝脱氧钢水之间反应机理的以下结论:1. MgO-C内部发生氧化还原钢包精炼中的耐火材料和铝脱氧钢水; 2.在界面处形成薄的氧化层是由于镁蒸气和溶解在钢水中的铝之间的反应以及坩埚壁中MgO和C之间的反应产生的CO(g)。 3.已显示出钢中形成的氧化物夹杂物主要由MgO,Al_2O_3或它们的混合物组成; 4.据信某些最细的夹杂物是在钢的冷却和凝固过程中形成的二次夹杂物,仅与镁从坩埚向钢的扩散有关。 5.热力学计算表明,在真空精炼过程中,随着压力的降低,碳包氧化镁对钢包衬里的化学相容性降低。

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