欢迎登录材料期刊网

材料期刊网

高级检索

采用1∶1的水力学模型研究了浸入式水口出口形状(椭圆形、矩形、方形)对结晶器自由液面特征、流股特征与流场的影响.在通钢量为3.20和4.48 t/min时,结晶器液面波动与表面流速都遵循椭圆形水口<矩形水口<方形水口的变化规律.椭圆形水口的流股为“旋转流股”,流股扩展角和倾角最大,流股分散,且在出口处流速分布均匀;方形与矩形水口流股为“平滑流股”,方形水口流股的扩展角和倾角最小,流股集中在出口偏下半部分处;矩形水口流股扩展角、倾角、流股分散与均匀程度居中.综合考虑:在高拉速条件下(通钢量为4.48 t/min),椭圆形水口条件下结晶器液面的平均波高为5.5mm,表面流速为0.32 m/s,仍然有提高拉速的空间,且流股速度在出口处分布均匀,所以较优的水口出口形状为椭圆形.

参考文献

[1] 王现辉,王新华,张炯明,景财良.CSP结晶器内钢液面动态失稳现象的水模型实验[J].北京科技大学学报,2009(02):234-239.
[2] Zhang L F,Thomas B G .State of the Art in Evaluation and Control of Steel Cleanliness[J].ISIJ International,2003,43(3):271.,2003.
[3] 包燕平,张涛,蒋伟,徐保美.板坯连铸结晶器内钢液流场的三维数学模型[J].北京科技大学学报,2001(02):106-110.
[4] 岳峰,包燕平,刘国林,齐新霞,李勇,张怀宾.板坯连铸机浸入式水口的结构优化[J].炼钢,2004(02):51-54.
[5] Zhang L F,Yang S,Cai K,et al .Investigation of Fluid Flow and Steel Cleanliness in the Continuous Casting Strand[J].Metallurgical and Materials Transactions,2007,38(1):63.,2007.
[6] 邓小旋,熊霄,王新华,李林平,郝晨晖,魏鹏远,季晨曦.水口底部形状对高拉速板坯连铸结晶器液面特征的影响[J].北京科技大学学报,2014(04):515-522.
[7] Chaudhary R,Lee G G,Thomas B G,et al .Transient Mold Fluid Flow With Well-and Mountain-Bottom Nozzles in Continuous Casting of Steel[J].Metallurgical and Materials Transactions,2008,39(6):870.,2008.
[8] Thomas B G,Yuan Q,Sivaramakrishnan S,et al .Comparison of Four Methods to Evaluate Fluid Velocities in a Continuous Slab.Casting Mold[J].ISIJ International,2001,41(10):1262.,2001.
[9] Wilson F G,Heesom M J,Nicholson A,et al .Effect of Fluid Flow Characteristics on Nozzle Blockage in Aluminum-Killed Steels[J].Ironmaking and Steelmaking,1987,14(6):296.,1987.
[10] Tsukamoto N,Ichikawa K,Iida E,et al.Improvement of Submerged Nozzle Design Based on Water Model Examination of Turdish Slide Gate[C]//74th Steelmaking Conf Proc.Warrendale:ISS,1991:803.,1991.
[11] Gupta D,Lahiri A K .Water Modeling Study of the Jet Characteristics in a Continuous-Casting Mold[J].Steel Research,1992,63(5):201.,1992.
[12] Honeyands T,Lucas J,Cambers J,et al.Preliminary Modeling of Steel Delivery to Thin Slab Caster Molds[C]//75th Steelmaking Conference Proceeding.Warrendale:ISS,1992:451.,1992.
[13] Thomas B G,Mika L M,Najjar F M .Simulation of Fluid Flow Inside a Continuous Slab Casting Machine[J].Metallurgical and Materials Transactions,1990,21
[14] Bai H,Thomas B G .Turbulent Flow of Liquid Steel and Argon Bubbles in Slide-Gate Tundish Nozzles:Part Ⅱ.Effect of Operation Conditions and Nozzle Design[J].Metallurgical and Materials Transactions,2001,32(2):269.,2001.
[15] Najjar F M,Thomas B G,Hershey D E .Numerical Study of Steady Turbulent Flow Through Bifurcated Nozzle in Continuous Casting[J].Metallurgical and Materials Transactions,1995,26(4):749.,1995.
[16] 邓小旋,王强强,钱龙,王新华,黄福祥.适合漏斗型薄板坯连铸结晶器三孔水口的水模型优化[J].钢铁,2012(07):26-30.
[17] 邓小旋,熊霄,王新华,冀云卿,黄福祥,郝鑫.高拉速板坯连铸结晶器浸入式水口的水模型研究[J].北京科技大学学报,2013(10):1304-1312.
[18] Kubota J,Okimoto K,Shirayama A,et al.Meniscus Flow Control in the Mold by Travelling Magnetic Field for High Speed Slab Caster[C]//74th Steelmaking Conf Proc.Warrendale:ISS,1991:233.,1991.
[19] Bai H.Argon Bubble Behavior in Slide-Gate Tundish Nozzles During Continuous Casting of Steel Slabs[D].Illinois:University of Illinois at Urbana-Champaign,2000.,2000.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%