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Effect of the Primary Oxide on the Behavior of the Oxide Precipitating during Solidification of Steel

机译:一次氧化物对钢凝固过程中氧化物沉淀行为的影响

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Effect of the primary oxide on the behavior of the oxide precipitated and grown during solidification was investigated using Mn deoxidized steel which has primary oxides and soluble oxygen before solidification of the steel. The composition and size of oxides in the continuously cast steel were observed and theoretically analyzed. The results obtained are as follows. MnO-FeO and MnO-FeO-Al_2O_3 oxides were observed. The compositions of the oxides change with cooling rate of the steel and the size of oxide. The Al_2O_3 content in the oxide at low cooling rate is lower than that at high cooling rate. The Al_2O_3 content in the oxide decreases with the decrease in the size of the oxide. As a result of the theoretical analysis of the oxide behavior during solidification on the basis of a diffusion growth model, it has been found that MnO-FeO oxide precipitates and grows regardless of primary oxide during solidification and MnO-FeO-Al_2O_3 oxide grows during solidification as MnO precipitates on the primary oxide which contains Al_2O_3.
机译:使用Mn脱氧钢,研究了一次氧化物对凝固过程中析出和生长的氧化物行为的影响,该钢在凝固前具有一次氧化物和可溶性氧。观察并理论分析了连铸钢中氧化物的组成和尺寸。得到的结果如下。观察到MnO-FeO和MnO-FeO-Al_2O_3氧化物。氧化物的组成随钢的冷却速度和氧化物的尺寸而变化。低冷却速率下的氧化物中的Al_2O_3含量低于高冷却速率下的氧化物。氧化物中Al_2O_3的含量随着氧化物尺寸的减小而降低。根据扩散扩散模型对凝固过程中的氧化物行为进行理论分析的结果表明,在凝固过程中,MnO-FeO氧化物的沉淀和生长与初级氧化物无关,而在凝固过程中,MnO-FeO-Al_2O_3氧化物的生长因为MnO沉淀在含有Al_2O_3的一次氧化物上。

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