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Reaction & Separation

Separation Mechanism of Solid/Liquid Inclusions Transfer at Steel?Slag Interface

  • Yelian ZHOU Zhiyin DENG Miaoyong ZHU
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  • School of Metallurgy, Northeastern University, Shenyang, Liaoning 110819, China

Received date: 2017-05-19

  Revised date: 2017-06-07

  Online published: 2018-01-29

Abstract

Some physical simulation experiments were carried out to understand the phenomenon that solid inclusion could be removed more easily compared with liquid inclusions in industrial practice. The results showed that the molten steel between a solid inclusion and the interface would be drained out by the interfacial tension in an extremely short time since the solid inclusions cannot be wetted by liquid steel. Subsequently, solid inclusions can enter the slag phase immediately. On the other hand, liquid inclusions can be wetted by liquid steel and the liquid steel between the inclusion and interface cannot be drained out by the interfacial tension, then a thin steel film would form. The pressure in liquid film would finally break the film, resulting in the separation of liquid inclusions. The residence time of liquid inclusions at the steel?slag interface was obviously longer than that of solid inclusions in a real case.

Cite this article

Yelian ZHOU Zhiyin DENG Miaoyong ZHU . Separation Mechanism of Solid/Liquid Inclusions Transfer at Steel?Slag Interface[J]. The Chinese Journal of Process Engineering, 2018 , 18(1) : 96 -102 . DOI: 10.12034/j.issn.1009-606X.217237

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