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Study on the Chemical Aspects of Non-Metallic Inclusions in Ladle Treatment

机译:钢包处理中非金属夹杂物化学成分的研究

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Non-metallic inclusions have become the major concern in the production of clean steels. Deoxidation of steel with aluminum wire injection is very commonly used today, and plays a crucial role in ladle metallurgy. The addition of aluminum not only results in the formation of alumina inclusions but also affects the inclusion chemistry. The manner and rate of nucleation of alumina have great impact on the deoxidation process. Hence, one of the preconditions to control the behaviour of inclusions in the ladle is a good understanding of the mechanism and the rate of alumina nucleation. Many researchers agree upon that homogeneous nucleation of inclusions can take place in regions, where the supersaturation of the deoxidizing element is very high. The present study was made to gain an insight into the effects of aluminum addition on the inclusions. The investigation is based on a mathematical modeling study in combination with experiments performed both in the laboratory and in the industry. While the modeling study and the laboratory experiments were more focused on the effects of aluminum addition, the industrial study was made to get an understanding of the inclusion chemistry and behaviours along the history of the ladle process.
机译:非金属夹杂物已成为清洁钢生产中的主要关注点。如今,铝线喷射对钢进行脱氧非常普遍,并且在钢包冶金中起着至关重要的作用。铝的添加不仅导致氧化铝夹杂物的形成,而且影响夹杂物的化学性质。氧化铝成核的方式和速率对脱氧过程有很大的影响。因此,控制钢包中夹杂物行为的前提条件之一是对氧化铝成核机理和速率的充分理解。许多研究人员一致认为,夹杂物的均相形核可发生在脱氧元素过饱和度很高的区域。进行本研究是为了了解铝添加对夹杂物的影响。该调查基于数学模型研究,并结合了在实验室和行业中进行的实验。尽管建模研究和实验室实验更多地关注铝添加的影响,但进行了工业研究以了解钢包过程中夹杂物的化学性质和行为。

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