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金属学报  2012 

行波磁场下吹Ar过程中结晶器内气泡行为的研究

DOI: 10.3724/SP.J.1037.2011.00792, PP. 951-956

Keywords: 模拟实验,连铸结晶器,低频行波磁场,气泡分布,电阻探针

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Abstract:

采用Pb-Sn-Bi合金进行模拟实验,研究了吹Ar过程中施加低频行波磁场时结晶器内气泡的运动和分布.用电阻探针法测量了结晶器内金属液面下及液相深处的气泡分布,考察了磁感应强度、拉速和吹气量对结晶器内气泡运动、数量和分布的影响.结果表明,吹气量和拉速的增加使结晶器窄面附近的气泡数量增多;施加行波磁场使液相深处窄面附近的气泡数量减少,减少了气泡被凝固坯壳捕获的可能性,并且抑制了高浇速时沿结晶器宽度方向气泡上浮不均匀的现象,可避免局部气泡上浮数量过多而对液面扰动过大.通过对大气泡分布规律的研究发现施加行波磁场使气泡聚合现象增强,促进了气泡的上浮,且当磁感应强度增加到0.12T时大气泡在结晶器宽度方向上浮更均匀.

References

[1]  Yu H Q, Zu M Y. ISIJ Int, 2008; 48: 584
[2]  Kunstreich S, Dauby P H. Ironmaking Steelmaking, 2005; 32: 80
[3]  Thomas B G, Zhang L. ISIJ Int, 2001; 41: 1181
[4]  Zhang L F, Yang S B, Cai K K, Li J Y, Wan X G, Thomas B G. Metall Mater Trans, 2007; 38B: 63
[5]  Singh V, Dash S K, Sunitha J S, Ajmani S K, Das A K. ISIJ Int, 2006; 46: 210
[6]  Cukierski K, Thomas B G. Metall Mater Trans, 2008; 39B: 94
[7]  Garcia-Hernandez S, Morales R D, Torres-Alonso E. Ironmaking Steelmaking, 2010; 37: 360
[8]  Timmel K, Eckert S, Gerbeth G. Metall Mater Trans, 2011; 42B: 68
[9]  Kubo N, Kubota J, Suzuki M, Ishii T. ISIJ Int, 2007; 47: 988
[10]  Miki Y, Takeuchi S. ISIJ Int, 2003; 43: 1548
[11]  Kwon Y, Zhang J, Lee H G. ISIJ Int, 2006; 46: 257
[12]  Yamashita S, Iguchi M. ISIJ Int, 2001; 41: 1529
[13]  Takatani K, Tanizawa Y, Mizukami H, Nishimura K. ISIJ Int, 2001; 41: 1252
[14]  Zhang S J, Zhu M Y, Zhang Y L, Zheng S G, Cheng N L, Song J X. Acta Metall Sin, 2006; 42: 1087
[15]  (张胜军, 朱苗勇, 张永亮, 郑书国, 程乃良, 宋景欣. 金属学报, 2006; 42: 1087)
[16]  Cao N, Zhu M Y. Acta Metall Sin, 2008; 44: 79
[17]  (曹娜, 朱苗勇. 金属学报, 2008; 44: 79)
[18]  Wang Y F, Dong A P, Zhang L F. Steel Res Int, 2011; 82: 428
[19]  Lei Z S, Zhang H B, Ren Z M, Deng K, Zhong Y B. 6th Int Conf on Electromagnetic Processing of Materials, Dresden, Germany: Forschungszentrum Dresden-Rossendrof, 2009: 575
[20]  Yu H Q, Zhu M Y. Acta Metall Sin, 2008; 44: 619
[21]  (于海岐, 朱苗勇. 金属学报, 2008; 44: 619)
[22]  Yavuz M M. Steel Res Int, 2011; 82: 809
[23]  Yu Z, Zhang Z Q, Ren Z M, Lei Z S, Deng K. Acta Metall Sin, 2010; 46: 1275
[24]  (于湛, 张振强, 任忠鸣, 雷作胜, 邓康. 金属学报, 2010; 46: 1275)
[25]  Kubo N, Ishii T, Kubota J, Ikagawa T. ISIJ Int, 2004; 44: 556
[26]  Kubota J, Kubo N, Ishii T, Suzuki M, Aramaki N, Nishimachi R. NKK Technol Rev, 2001; 85: 1
[27]  Toh H, Hasegawa H, Harada H. ISIJ Int, 2001; 41: 1245
[28]  Wang X D, Fautrelle Y, Etay J, Moreau R. Metall Mater Trans, 2009; 40B: 82
[29]  Wang H D, Zhu M Y, Yu H Q. J Iron Steel Res Int, 2010; 17: 25
[30]  Wang T F, Wang J F, Yang W G, Jin Y. J Chem Eng, 2001; 52: 197
[31]  (王铁峰, 王金福, 杨卫国, 金涌. 化工学报, 2001; 52: 197)

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