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参考了文献的研究结果,并结合部分实际生产数据分析、探讨板坯横裂纹发生机理和化学成分对钢种的热塑性和板坯横裂纹发生的影响,并简要提出改进板坯表面横裂纹的措施.

参考文献

[1] 铃木洋夫;西村哲;今村淳 .Hot Ductility in Steels in the Temperature Range between 900 and 600℃[J].铁と钢(日本),1981,67:1180.
[2] Y Maehara;K. Yasumoto;Y. Sugitani .Effect of Carbon on Hot Ductility of As-cast Low Alloy Steels[J].Transactions ISIJ Int,1985,25:1045.
[3] Y Maehare;K. Yasumoto;H. Tomono;T Nagamichi,YOhmori .Surface cracking mechanism of continuously cast low carbon low alloy steel slabs[J].材料科学与工艺(英文版),1990,6:793.
[4] B Mintz;S. Yue;J. J. Jonas .Hot ductility of steels and its relationship to the problem of transverse cracking during continuous casting[J].International Materials Reviews,1991,36(05):187.
[5] 草野昭彦;三隅秀幸;原田慎三 .Estimation of the Fomed Position of the Surface Cracks on the Slab in the Continuous Caster[J].铁と钢(日本),1996,82:35.
[6] 龚斌;朱为民;叶锦渭;汪钺强 .关于连铸板坯角横裂的研究[J].钢铁,1996,31:21.
[7] 王新华;赵沛;杨志尚.连铸板坯横裂成因及对策(论文)[M].,1993
[8] Haiwen LUO;L. Pentti KARJALAINEN;David A. PORTER .The Influence of Ti on the Hot Ductility of Nb-bearing Steels in Simulated Continuous Casting Process[J].ISIJ International,2002(3):273-282.
[9] Barrie MINTZ .The Influence of Composition on the Hat Ductility of Steels and to the Problem of Transverse Cracking[J].ISIJ International,1999(9):833-855.
[10] A Guillet;S. Yue;M. G. Akben .Influence of Heat Treatment and Carbon Content on the Hot Ductility of Nb-Ti Microalloyed Steels[J].ISIJ International,1993,33(03):413.
[11] S Harada;S. Tanaka;H. Misumi;S Mizoguchi and HHoriguchio .A Formation Mechanism of Transverse Cracks on CC Slab Surface[J].ISIJ International,1990,30:130.
[12] H.Matsuoka .Influence of Cu and Sn on Hot Ductility of Steels with Various C Content[J].ISIJ International,1997(3):255-262.
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