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吴华杰等:基于PV技术的钢包临界卷渣行为水模型研究 ·643 B]Zhao L H,Ma W J,Wang M.Physical modeling of argon bottom ment of mold powder into molten steel./S//Int,2000,40 (7):685 blowing refining in a 100t ladle.J Unir Sci Technol Beijing,2014, 8]Ignehi M,Teranehi Y.Karman vortex probe for the detection of 36(Suppl1):140 molten metal Surface flow in low velocity range.ISI/Int,2002,42 (赵立华,马文俊,王敏.100t钢包底吹氩精炼过程的物理模 (9):939 拟.北京科技大学学报,2014,36(增刊1):140) ]Han Z J.Holappa L.Mechanisms of iron entrainment into slag due [4]Han JJ,Li S Q,Wu L.Stirring characteristics of argon blowing to rising gas bubbles.IS/J Int,2003,43(3):292 from the ladle bottom.J Unie Sci Technol Beijing,2011,31 (9): [10]Yamashita S,Iguchi M.Mechanism of mold powder entrapment 1085 caused by large argon bubble in continuous casting mold.IS/ (韩建军,李士琦,吴龙.钢包底吹氢搅拌特性.北京科技大学 t,2001,41(12):1529 学报,2011,31(9):1085) [11]Ai X G,Bao Y P,Wu H J,et al.A study on water modeling of la- 5]Zheng W,Tu H,Li G Q,et al.Physical simulation of refining dle with bottom argon blowing in critical slag entrapment condi- process optimization for bottom argon blowing in a 250 t ladle.J tion.Spec Steel,2009,30(2):7 Univ Sci Technol Beijing,2014,36(Suppl 1):53 (艾新港,包燕平,吴华杰,等.钢包底吹氩卷渣临界条件的水 (郑万,屠浩,李光强,等.2501钢包底吹氩精炼工艺优化的物 模型研究.特殊钢,2009,30(2):7) 理模拟.北京科技大学学报,2014,36(增刊1):53) 2]Feldbauer S L Slag Entrainment in the Mold of a Continuous [6]Jakobsson A,Sichen D,Seetharaman S,et al.Interfacial phenome- Caster [Dissertation ]Pittsburgh:Camegie Mellon University, na in some slag/metal reactions.Metall Mater Trans B,2000,31 1995. (5):973 [13]Mietz J,Schneider S,Oeters F.Emulsification and mass transfer Iguchi M,Yoshida J,Shimizu T,et al.Model study on the entrap- in ladle metallurgy.Steel Res,1991,62 (1):10吴华杰等: 基于 PIV 技术的钢包临界卷渣行为水模型研究 [3] Zhao L H,Ma W J,Wang M. Physical modeling of argon bottom blowing refining in a 100 t ladle. J Univ Sci Technol Beijing,2014, 36( Suppl 1) : 140 ( 赵立华,马文俊,王敏. 100 t 钢包底吹氩精炼过程的物理模 拟. 北京科技大学学报,2014,36( 增刊 1) : 140) [4] Han J J,Li S Q,Wu L. Stirring characteristics of argon blowing from the ladle bottom. J Univ Sci Technol Beijing,2011,31 ( 9) : 1085 ( 韩建军,李士琦,吴龙. 钢包底吹氩搅拌特性. 北京科技大学 学报,2011,31( 9) : 1085) [5] Zheng W,Tu H,Li G Q,et al. Physical simulation of refining process optimization for bottom argon blowing in a 250 t ladle. J Univ Sci Technol Beijing,2014,36( Suppl 1) : 53 ( 郑万,屠浩,李光强,等. 250 t 钢包底吹氩精炼工艺优化的物 理模拟. 北京科技大学学报,2014,36( 增刊 1) : 53) [6] Jakobsson A,Sichen D,Seetharaman S,et al. Interfacial phenome￾na in some slag /metal reactions. Metall Mater Trans B,2000,31 ( 5) : 973 [7] Iguchi M,Yoshida J,Shimizu T,et al. Model study on the entrap￾ment of mold powder into molten steel. ISIJ Int,2000,40( 7) : 685 [8] Ignehi M,Teranehi Y. Karman vortex probe for the detection of molten metal Surface flow in low velocity range. ISIJ Int,2002,42 ( 9) : 939 [9] Han Z J,Holappa L. Mechanisms of iron entrainment into slag due to rising gas bubbles. ISIJ Int,2003,43( 3) : 292 [10] Yamashita S,Iguchi M. Mechanism of mold powder entrapment caused by large argon bubble in continuous casting mold. ISIJ Int,2001,41( 12) : 1529 [11] Ai X G,Bao Y P,Wu H J,et al. A study on water modeling of la￾dle with bottom argon blowing in critical slag entrapment condi￾tion. Spec Steel,2009,30( 2) : 7 ( 艾新港,包燕平,吴华杰,等. 钢包底吹氩卷渣临界条件的水 模型研究. 特殊钢,2009,30( 2) : 7) [12] Feldbauer S L. Slag Entrainment in the Mold of a Continuous Caster [Dissertation]. Pittsburgh: Carnegie Mellon University, 1995. [13] Mietz J,Schneider S,Oeters F. Emulsification and mass transfer in ladle metallurgy. Steel Res,1991,62( 1) : 10 ·643·
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