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Mechanism of Non-metallic Inclusion Formation and Modification and Their Deformation during Compact Strip Production (CSP) Process for Aluminum-Killed Steel

机译:铝轧钢紧凑带材生产过程中非金属夹杂物的形成,变质和变形机理

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The formation and modification of non-metallic inclusions for Al-killed steel during Compact Strip Production Process (CSP Process) was studied by industrial experiments. The thermodynamics for the formation of Al_(2)O_(3), MgO·Al_(2)O_(3) spinel, various calcium aluminates and CaS bearing inclusion were analyzed with the help of calculation software FactSage. It is found that the oxygen activity in liquid steel during LF (Ladle Furnace) refining is confirmed to be determined by the equilibrium between dissolved Al and Al_(2)O_(3) in inclusion. There are two manners for Al_(2)O_(3) inclusion modification during LF refining: the first route is followed by Al_(2)O_(3)-low modified calcium aluminates-liquid calcium aluminates; and the other is as Al_(2)O_(3)– MgO·Al_(2)O_(3) spinel-CaO–MgO–Al_(2)O_(3) multi-component inclusion. In addition, the liquid calcium aluminates have the tendency to be multi-component inclusion. Two types of CaS bearing inclusion could precipitate in a slab during solidification. The favorable modified inclusions deform very well along with steel matrix during rolling process even if they are associated with CaS bearing layer, while the no or low modified Al_(2)O_(3) based inclusion would be rolled into pieces and the micro-cracks might be generated around the inclusions.
机译:通过工业实验研究了紧凑型带钢生产过程中铝镇静钢非金属夹杂物的形成和改性。借助计算软件FactSage分析了形成Al_(2)O_(3),MgO·Al_(2)O_(3)尖晶石,各种铝酸钙和CaS轴承夹杂物的热力学。发现在LF(钢包炉)精炼过程中,钢中的氧活度由溶解的Al和夹杂物中的Al_(2)O_(3)之间的平衡确定。在LF精炼过程中,Al_(2)O_(3)夹杂物的改性有两种方式:第一种途径是Al_(2)O_(3)-低改性铝酸钙-液态铝酸钙。另一个是Al_(2)O_(3)– MgO·Al_(2)O_(3)尖晶石-CaO–MgO–Al_(2)O_(3)多组分夹杂。另外,液态铝酸钙具有被多组分夹杂的趋势。凝固过程中,两种类型的含CaS的夹杂物可能会在平板中析出。即使与CaS轴承层结合,良好的改性夹杂物在轧制过程中也会与钢基体一起很好地变形,而无或低改性的基于Al_(2)O_(3)的夹杂物将被轧成片并产生微裂纹可能在包裹体周围产生。

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