首页> 外文会议>International Conference on Molten Slags, Fluxes and Salts >DOES INTERFACIAL TENSION PLAY THE MOST IMPORTANT ROLE IN SLAG-METAL REACTIONS? AN IMPORTANT ASPECT IN PROCESS OPTIMIZATION
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DOES INTERFACIAL TENSION PLAY THE MOST IMPORTANT ROLE IN SLAG-METAL REACTIONS? AN IMPORTANT ASPECT IN PROCESS OPTIMIZATION

机译:界面张力是否在渣 - 金属反应中发挥着最重要的作用?过程优化中的一个重要方面

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In view of the nature of heterogeneous reaction of many materials processes, great attention has been paid to the reaction interfaces. Very often, the interfacial tension is given the foremost importance in the study of interfaces in general and slag-metal reactions in particular. As an example, the dependence of entrainment of ladle slag into liquid steel on interfacial tension has been the topic of many researchers. In the present work, the interface between liquid silicon and CaO-SiO_2 slag and the interfacial reaction between silicon and graphite were studied experimentally to gain an insight into the impacts of chemical driving force and interfacial tension on the interfacial phenomena. The results strongly suggested that the chemical driving force could play dominating role in determining the interface, while the interfacial tension would only become important when the slag and metal were reaching equilibrium. Based on the experimental findings, the kinetics of the slag-metal reaction was discussed. Also, the possibility of the entrainment of ladle slag as a source of nonmetallic inclusions was evaluated. The present study would like to draw researchers' attention regarding the important role of Gibbs energy of the reaction at the interface in the interfacial phenomena and therefore getting an improved understanding of the reaction process.
机译:鉴于许多材料工艺的异质反应性质,已经向反应界面支付了极大的关注。通常,界面张力尤其赋予了一般和渣 - 金属反应的界面研究。例如,填充钢包炉渣在界面张力上的液体钢的依赖性是许多研究人员的主题。在本作工作中,通过实验研究了液体硅和CaO-SiO_2炉渣之间的界面和硅和石墨之间的界面反应,深入了解化学驱动力和界面张力对界面现象的影响。结果强烈建议化学驱动力可以在确定界面时起到主导作用,而界面张力只会在炉渣和金属达到平衡时变得重要。基于实验结果,讨论了渣 - 金属反应的动力学。而且,评估了作为非金属夹杂物源作为非金属夹杂物源的钢包炉渣的可能性。本研究希望利用研究人员对界面现象界面在界面处反应的重要作用的关注,从而改善对反应过程的理解。

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