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Oxide Inclusion Control in Ladle and Tundish for Producing Clean Stainless Steel

机译:钢包和中间包中氧化物夹杂物的控制,用于生产干净的不锈钢

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In order to produce clean stainless steel, the inclusion softening technology and the large inclusion removal technology are important. Then, to elucidate the origin of inclusion in slabs and billets, experiments were conducted, adding a tracer to AOD slag and tundish slag. To control the composition of inclusions, a thermodynamic calculation model was developed. And, to elucidate the characteristics of floating separation of large inclusions in the tundish, tests using the water model were conducted. The following results were obtained: (1) The inclusions in stainless steel were caused by the AOD slag suspended in the molten steel which is not removed in the tundish but carried over into the cast shapes. (2) The thermodynamic calculation model in which the suspended slag is considered was developed. The composition of inclusions could be predicted by this model. In the actual process, the precipitation of MgO-Al_2O_3 spinel in inclusion was prevented by reducing the MgO and Al_2O_3 contents of the AOD slag. (3) For the removal of large inclusions in the tundish, an increase in residence time is particularly effective. In the actual casting, the quality of stainless steel products were improved by controlling the weight of steel and the residence time in the tundish.
机译:为了生产清洁的不锈钢,夹杂物软化技术和大的夹杂物去除技术很重要。然后,为了阐明板坯和方坯中夹杂物的来源,进行了实验,在AOD炉渣和中间包炉渣中添加了示踪剂。为了控制夹杂物的组成,开发了热力学计算模型。并且,为了阐明中间包中大夹杂物的漂浮分离特征,使用水模型进行了测试。得到以下结果:(1)不锈钢中的夹杂物是由悬浮在钢水中的AOD炉渣引起的,该炉渣没有从中间包中除去,而是带入铸件中。 (2)建立了考虑悬浮渣的热力学计算模型。该模型可以预测夹杂物的组成。在实际过程中,通过减少AOD炉渣中MgO和Al_2O_3的含量来防止MgO-Al_2O_3尖晶石的析出。 (3)为了去除中间包中的大夹杂物,增加停留时间特别有效。在实际铸造中,通过控制钢的重量和在中间包中的停留时间来提高不锈钢产品的质量。

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