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Influence of calcium aluminate flux on reoxidation behaviour of molten steel during continuous casting process

机译:铝酸钙通量对连续铸造过程中钢水再氧化行为的影响

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It is an important issue to prevent molten steel in tundish from being reoxidized during the continuous casting process for improving the cleanliness of steel products. Rice husk ash (RHA) is an excellent insulation powder to prevent heat loss of the molten steel in the tundish. The addition of RHA increases the silica activity in the molten slag layer, which can cause reoxidation of molten steel. Therefore, the effect of calcium aluminate-based flux (CA-flux) on reoxidation behaviour was investigated with different ratios of CA-flux to RHA + CA-flux (=RCA). The silicon and oxygen pickup, which is caused by the self-dissociation of silica at the slag/metal interface was suppressed with an increasing RCA, and hence the number of inclusions formed by reoxidation in the molten steel was reduced at high RCA. The evolution of inclusions with different RCA was investigated by comparing experimental results with predictions from a refractory-slag-metal-inclusion (ReSMI) multiphase reaction simulation. Finally, the inclusion formation behaviour in tundish was investigated using a ReSMI simulation with different RCA and including the temperature drop of the steel melts in the ladle during casting.
机译:在连续铸造过程中防止钢水中的钢水以改善钢铁产品的清洁度,这是一个重要的问题。稻壳灰(RHA)是一种绝缘粉末,以防止中间包中钢水的热量损失。 RHA的添加增加了熔融渣层中的二氧化硅活性,这会引起钢水的再氧化。因此,用不同的Ca-Flux与rha + Ca-Flux(= RCA)的不同比例研究了铝酸钙基通量(Ca-Flux)对再氧化行为的影响。通过增加的RCA抑制了由炉渣/金属界面处的二氧化硅的自离解引起的硅和氧拾取器,因此在高RCA下降低了通过钢水中的再氧化形成的夹杂物的数量。通过将实验结果与来自难熔渣 - 金属夹杂物(Resmi)多相反应模拟的预测进行比较,研究了具有不同RCA的夹杂物的演变。最后,使用具有不同RCA的Resmi模拟来研究中间包中的包含形成行为,并且在浇铸期间包括钢包中钢熔化的温度下降。

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