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CSP生产线生产Ti微合金化高强耐候钢铸态组织研究 被引量:2

Study on Characteristics of As-cast Structure of High Strength Steels Microalloyed with Ti by Thin Slab Casting and Direct Rolling Process
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摘要 对CSP生产的Ti微合金化高强耐候钢的铸坯组织、化学成分偏析、枝晶间距、夹杂物进行研究,结果表明,CSP生产的Ti微合金化高强耐候钢铸坯的低倍组织在结构上与传统板坯及CSP生产的普通集装箱铸坯相差不大,但高强耐候钢铸坯组织更为细密,一次枝晶间距、二次枝晶间距较普通集装箱铸坯稍小。铸坯中偏析较严重的元素是C、S、P,其它元素偏析较轻。铸坯中大颗粒夹杂物较少,主要是Al、Ti、Ca、S类夹杂物,由于Ti、Ca、S含量较少,夹杂物含量较低。而通过对Al类夹杂物进行分析,发现Al类夹杂物在连铸坯横截面上均匀分布,没有明显的偏聚,夹杂物含量在0.0014%~0.0022%波动,符合夹杂物存在特性,波动幅度在正常范围内,铸坯中Al夹杂物大部分粒度在2.5μm以下。 The as - cast structure, chemical composition segregation, dendrite arm spacing and inclusions of the high strength steels microalloyed with Titanium were investigated. The results show that there is no difference between CSP slab and conventional cast slab for macrostructure. However, the macrostructure of slab is relatively finer. The dendrite arm spacing is lower than conventional cast slab too. Segregation for elements C, S, P is large and the others segregation are small in the CSP slab. The big inclusions are few in the CSP slab. The Al, Ti, Ca and S inclusions are main inclusion in the slab, and the Ti, Ca and S inclusions content are few because the element content are few. The size of Al inclusion is lower than 2.5 μm, and equality in the slab. The content of Al inclusion is about around 0.001 4% - 0.002 2% and no obviously gathering in the slab.
出处 《钢铁钒钛》 CAS 2008年第3期7-10,共4页 Iron Steel Vanadium Titanium
关键词 薄板坯连铸连轧 高强耐候钢 铸态组织 偏析 枝晶间距 夹杂物 thin slab casting and direct rolling high strength weathering steel as- cast structure segrega-tion dendrite ann spacing inclusions
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参考文献7

  • 1Zentara N, Kaspar R. Optimisation of Hot Rolling Schedule for Direct Charging of Thin Slabs of Nb- V Mieroalloyed Steel[J]. Materials Science and Technology, 1994,10(5 ) :370 - 376.
  • 2Uranga P, Fernandez A I, Lopez B, et al. Modeling of Austenite Grain Size Distribution in Nb Microalloyed Steels Processed by Thin Slab Casting and Direct Rolling[J]. (TSDR) Route,ISIJ International,2004,44(8):1416- 1425.
  • 3Ernst Hensger, K Flemming G. Recent Developments in Compact Strip Production of Nb- microalloyed Steels[ A]. Proceedings of the International Symposium Niobium 2001 [ C]. Niobium Science and Technology ,2001.405 - 426.
  • 4吴巍,王春怀,干勇,何宇明,朱斌.含铌、钛船板钢中板表面微裂纹研究[J].钢铁,2002,37(7):41-44. 被引量:33
  • 5Zhou Deguang, Fu Jie, Wang Ping. Carbon Segregation of Bearing Steel Concasting Billet[J] .Journal of Materials Science and Technology,2000,16(3 ) :273 - 276.
  • 6周德光,傅杰,金勇,柳得橹,康永林,王中丙,陈贵江,李烈军.CSP薄板坯的铸态组织特征研究[J].钢铁,2003,38(8):47-50. 被引量:17
  • 7郑志强,李载友,陈方明,赵存忠,徐邦伟,刘崇明.连铸中加稀土改善方坯质量[J].钢铁,1995,30(1):23-27. 被引量:12

二级参考文献8

  • 1郑志强,李载友,陈方明,赵存忠,徐邦伟,刘崇明.连铸中加稀土改善方坯质量[J].钢铁,1995,30(1):23-27. 被引量:12
  • 2[1]Yasunaka H., Nakayama K, Ebina K, et al.. Improvement of Transverse Corne Cracks in Continuously Cast Hypoperitectic Slabs. TETSO-TO-HAGANE,1995,81(9):894.
  • 3Fritz-Peter Pleschiutschnigg, Gunter Flemming, Wolfgang Hennig. The Latest Developments in CSP-Technology. 1999 CSM Annual Meeting, Beijing, China, 1999,10.
  • 4Deguang ZHOU, Jie FU, Ping WANG. Carbon Segregation of Bearing Steel Concasting Billet. Journal of Materials Science and Technology, 2000, 16(3): 273~276.
  • 5蔡开科,连续铸钢,1990年
  • 6刘国勋,金属学,1980年
  • 7李润隆,中国金属学会冶金过程物理化学学术会议论文
  • 8吴巍,王春怀,干勇,何宇明,朱斌.含铌、钛船板钢中板表面微裂纹研究[J].钢铁,2002,37(7):41-44. 被引量:33

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