首页> 外文期刊>ISIJ international >Interaction Steel/Slag/Submerged Entry Nozzle and its Impact on Refractory Wear – Thermochemical Process Simulation
【24h】

Interaction Steel/Slag/Submerged Entry Nozzle and its Impact on Refractory Wear – Thermochemical Process Simulation

机译:钢/渣/浸入式喷嘴的相互作用及其对耐火材料磨损的影响–热化学过程模拟

获取原文
           

摘要

This work presents the generation and application of a process model which aims to increase the understanding of submerged entry nozzle (SEN) wear during continuous casting and its dependence on steel and slag compositions. An effective equilibrium reaction zone model was built and applied to calculate the equilibrium compositions of steel and slag at their common interface and in contact with the SEN. The results allow the estimation of the interface tension gradient responsible for Marangoni convection. Further, they include redox reactions at the slag/steel/refractory interface. Calculations were performed for a LC and a TRIP steel grade together with their respective mold fluxes. In both cases, the same SEN was used and the wear was assessed after service. In the case of the TRIP steel, the SEN showed by far lower wear and a less pronounced corrosion groove. The simulation showed that the interface tension difference responsible for Marangoni convection will be rather negligible for the case of TRIP steel, but it amounts to 150 mN/m for LC steel. Moreover, removal of carbon from the SEN zirconia-graphite sleeve will be caused by the reduction of silica in the slag. This is only possible at the three-phase boundary where the activity of the silicon formed is lowered by dissolution in the steel. Also, this effect is by far more distinct for LC steel and is in agreement with the different wear rate and corrosion groove. As a spin-off, the calculated interface tension might be interesting with respect to possible slag intrusion.
机译:这项工作介绍了工艺模型的产生和应用,该工艺模型旨在增进对连续浇铸过程中浸入式水口(SEN)磨损及其对钢和渣成分的依赖性的了解。建立了有效的平衡反应区模型,并将其用于计算钢和矿渣在其公共界面处以及与SEN接触时的平衡组成。结果允许估计引起Marangoni对流的界面张力梯度。此外,它们在炉渣/钢/耐火材料界面处包括氧化还原反应。对LC和TRIP钢牌号及其各自的保护渣进行了计算。在这两种情况下,均使用相同的SEN,并在维修后评估磨损。对于TRIP钢,SEN的磨损要低得多,腐蚀槽也不太明显。模拟表明,对于TRIP钢而言,造成Marangoni对流的界面张力差可以忽略不计,而对于LC钢,其差值为150 mN / m。而且,由于炉渣中二氧化硅的还原,会导致从SEN氧化锆-石墨套中除去碳。这仅在三相边界处是可能的,在三相边界处,由于溶解在钢中而降低了所形成的硅的活性。而且,这种效果对于LC钢而言更加明显,并且与不同的磨损率和腐蚀槽一致。作为附带产品,相对于可能的炉渣侵入,计算得出的界面张力可能很有趣。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号