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Effects of Refractory and Ladle Glaze on Evolution of Non‐Metallic Inclusions in Al‐Killed Steel

机译:耐火材料和钢包釉对Al杀钢非金属夹杂物演变的影响

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摘要

> Laboratory experiments are carried out to study the effects of different refractories (Al 2 O 3 refractory, MgO refractory, and glazed Al 2 O 3 refractory) on the formation of spinel inclusions and calcium aluminate inclusions. The results show that Al 2 O 3 refractory has almost no influence on the inclusions in Al‐killed steel, while MgO refractory and glazed Al 2 O 3 refractory can help the formation of spinel inclusions from alumina inclusions. Meanwhile, glazed Al 2 O 3 refractory can also contribute to the transformation of spinel inclusions into calcium aluminate inclusions. In contrast to ladle glaze, MgO refractory could supply more dissolved Mg to liquid steel. The formation of dissolved Mg and Ca holds the key for the evolution sequence of alumina, and spinel inclusions form earlier than calcium aluminate inclusions due to the faster formation of dissolved Mg. Besides, ladle glaze can also be a source of calcium aluminate inclusions.
机译: <第XML:ID =“SRIN201600470-SEC-0001”> > 进行实验室实验,以研究不同耐火材料的影响(Al 2 O. 3 难治性,MgO耐火材料和釉面 2 O. 3 耐火材料)在形成尖晶石夹杂物和铝酸钙夹杂物的形成。结果表明了 2 O. 3 耐火材料几乎没有对Al杀死钢的夹杂物的影响,而MgO耐火材料和玻璃玻璃 2 O. 3 耐火可以帮助形成来自氧化铝夹杂物的尖晶石夹杂物。与此同时,釉面 2 O. 3 耐火材料还可以有助于将尖晶石夹杂物转化成铝酸钙夹杂物。与钢包釉形成相比,MgO耐火材料可以向液体提供更多溶解的Mg。由于溶解的Mg的更快形成,溶解的Mg和Ca的形成含有氧化铝的进化序列和尖晶石夹杂物形式的键。此外,钢包釉也可以是铝酸钙夹杂物的来源。

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