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Observation on Physical Growth of Nonmetallic Inclusion in Liquid Steel During Ladle Treatment

机译:钢包处理过程中钢液中非金属夹杂物的物理生长观察

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摘要

The behaviors of several types of inclusions at a high temperature were examined using a confocal scanning laser microscope (CSLM, 1LM21H/SVF17SP). Although alumina inclusions tended to impact on each other, agglomerate, and grow quickly, no other inclusion type, such as spinel as well as solid and liquid calcium aluminate, was observed to attract each other. The results of confocal microscope study were compared with the industrial investigation. For this purpose, many steel samples were taken at different stages of ladle treatment. The samples were analyzed by scanning and light optical microscopes. Approximately 50,000 inclusions of several types were examined. Only alumina inclusions were attracted to each other and agglomerate. No agglomeration by attractive behavior was observed in the other types of inclusions, including liquid inclusions. Both the industrial data and the in situ observation by CSLM indicate that, although the attraction force and the agglomeration play a significant role in the growth of alumina inclusions, the agglomeration of spinel and calcium aluminate inclusions does not need special consideration in ladle treatment. The agglomeration of liquid calcium aluminate inclusions took place only when they occasionally met as a result of external force, which led to low collision probability. However, the agglomeration of the liquid calcium aluminate inclusions along with alumina particles could be detrimental in the casting process.
机译:使用共聚焦扫描激光显微镜(CSLM,1LM21H / SVF17SP)检查了几种夹杂物在高温下的行为。尽管氧化铝夹杂物趋向于相互影响,团聚并快速生长,但未观察到其他夹杂物类型,例如尖晶石以及固态和液态铝酸钙相互吸引。共聚焦显微镜研究的结果与工业研究进行了比较。为此,在钢包处理的不同阶段采集了许多钢材样品。通过扫描和光学显微镜分析样品。检查了大约50,000种几种类型的夹杂物。仅氧化铝夹杂物彼此吸引并附聚。在其他类型的夹杂物(包括液体夹杂物)中,未观察到因吸引行为而发生的团聚。工业数据和CSLM的现场观察都表明,尽管吸引力和团聚在氧化铝夹杂物的生长中起着重要作用,但尖晶石和铝酸钙夹杂物的团聚在钢包处理中并不需要特别考虑。液态铝酸钙夹杂物仅在由于外力而偶然相遇时发生附聚,这导致较低的碰撞概率。但是,液态铝酸钙夹杂物与氧化铝颗粒的附聚在铸造过程中可能是有害的。

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