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旋流喷嘴对圆坯连铸结晶器内流体流动与凝固的影响

Effect of Swirling Flow Nozzle on Fluid Flow and Solidification in a Round Bloom Continuous Casting Mold.

作者信息

Wang Jianli, Zhu Jiayu, Yang Yongkun, Wang Weian, Qiu Guoxing, Li Xiaoming

机构信息

School of Metallurgical Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

出版信息

Materials (Basel). 2022 Nov 28;15(23):8474. doi: 10.3390/ma15238474.

Abstract

The nozzle structure has an important effect on the fluid flow in the mold, which can significantly improve the solidified shell and product quality of alloy steel round bloom. The transient fluid flow, heat transfer, and solidification behavior under different nozzle structures and mold electromagnetic stirring (M-EMS) are investigated using a 3D transient mathematical model. The results show that a third small recirculation zone appears near the meniscus after the application of the swirling flow nozzle (SFN). The impact depth of SFN is shallower than that of the original submerged entry nozzle (SEN) impact, and the lower circulation zone is shifted upward. The horizontal swirling flow generated by SFN can significantly weaken the washing of the initial shell by high-temperature steel and improve the uneven growth phenomenon of the inner and outer curved solidified shell caused by mold curvature. The swirling flow produced by M-EMS in the mold can also improve the washing of the initial shell by the high-temperature jet and the uneven growth of the inner and outer curved shell. M-EMS can expand the high-temperature zone in the upper part of the mold, promote the superheat dissipation of the molten steel, and promote the growth of the solidified shell. In addition, after the application of M-EMS, the tangential velocity of -15° SFN in the meniscus is smaller, and the resulting liquid level fluctuation is lower at 5.07 mm, which is less likely to produce slag entrapment and is conducive to improving the quality of round bloom.

摘要

水口结构对结晶器内的钢液流动有重要影响,可显著改善合金钢圆坯的凝固坯壳及产品质量。采用三维瞬态数学模型研究了不同水口结构和结晶器电磁搅拌(M-EMS)作用下的瞬态钢液流动、传热及凝固行为。结果表明,采用旋流水口(SFN)后,在弯月面附近出现了第三个小回流区。SFN的冲击深度比原浸入式水口(SEN)的冲击深度浅,下部环流区上移。SFN产生的水平旋流可显著减弱高温钢水对初生坯壳的冲刷,改善结晶器曲率引起的内、外弯凝固坯壳生长不均匀现象。结晶器内M-EMS产生的旋流也可改善高温射流对初生坯壳的冲刷及内、外弯坯壳生长不均匀的情况。M-EMS可扩大结晶器上部的高温区,促进钢水过热度消散,促进凝固坯壳生长。此外,施加M-EMS后,弯月面处-15°SFN的切向速度较小,产生的液位波动较低,为5.07mm,不易产生卷渣,有利于提高圆坯质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27e3/9740607/d970ca877cfe/materials-15-08474-g001.jpg

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