ISSN:1003-8620

CN:42-1243/TF

主管:中信泰富特钢集团股份有限公司

主办:大冶特殊钢有限公司

特殊钢 ›› 2022, Vol. 43 ›› Issue (2): 12-15.

• 试验研究 • 上一篇    下一篇

工艺因素对82B钢280 mm x325 mm铸坯凝固过程的影响

吕进1,2, 徐东1,3, 郑冰1,3, 庞洪轩4,5, 邹志鹏1,4, 杨昕昆1,5   

  1. 1河北工程大学河北省高品质冷傲钢技术创新中心,邯郸056038,
    2安阳市新普钢铁有限公司技术中心,安阳455003;
    3辽宁科技大学冶金学院,鞍山114051 ;
    4河北普阳钢铁集团河北省高韧性风塔钢工程研究中心,邯郸056305;
    5河北普阳钢铁集团河北省高塑韧性耐磨钢板技术创新中心,邯郸056305
  • 收稿日期:2021-08-09 出版日期:2022-04-01 发布日期:2022-06-09
  • 作者简介:吕 进(1984-),男,硕士研究生(英国谢菲尔德哈雷姆大学),助理工程师,2007年武汉理工大学(本科)毕业,连铸、 轧钢等工艺研究。

Effects of Technological Factors on Solidified Process During Continuous Casting of 82B Steel 280 mm x 325 mm Bloom

Lü Jin1,2, Xu Dong1,3, Zheng Bing1,3, Pang Hongxuan4,5, Zou Zhipeng1,4 , Yang Xinkun1,5   

  1. 1 Technology Innovation Center for High Quality Cold Heading Steel of Hebei Province, Hehei University of Engineering, Handan 056038;
    2 Technology Center, Anyang Xinpu Iron and Steel Co Ltd, Anyang 455003 ;
    3.School of Materials and Metallurgy, University of Science and Technology Liaoning,Anslian 114051;
    4.Engineering Research Center for High Toughness Wind Tower Steel of Hebei Province, Hebei Puyang Iron and Steel Co Ltd, Handan 056305) ;
    5 Technology Innovation Center for Wear Resistant Steel Plate of High plasticity and High Toughness of Hebei Province, Hebei Puyang Iron and Steel Co Ltd, Handan 056305)
  • Received:2021-08-09 Published:2022-04-01 Online:2022-06-09

摘要: 为模拟不同工艺条件下的连铸坯的凝固过程,采用有限元法模拟了82B钢连铸的凝固过程,获得280 mm×325 mm连铸坯的温度场。结果表明,随拉速从0.60 m/min增加到0.76 m/min,凝固时fs=1处与fs=0处皆后移,但中心凝固时间反而增加了9.8%。随过热度由15℃增加到50℃时,凝固末端fs=1处同样后移,约后移1.1 m。根据模拟结果改进连铸工艺,当拉速从0.60 m/min增加到0.76m/min,增加轻压下工艺可改善低倍质量。

关键词: 280 mm x325 mm连铸坯, 温度场, 二次冷却区, , 数值模拟, SWRH82B钢

Abstract: In order to simulate solidification process of the bloom continuous casting under different technological factors ,the solidification process of 82B steel is simulated by using finite element method, and temperature field of 280 mm x 325 mm casting bloom is obtained. The results show that the solidification at fs=1 and fs =0 both move backward with the increase of the casting speed from 0. 60 m/min to 0. 76 m/min, but the solidification time of center increases by 9. 8% ; when the superheat increases from 15 °C to 50°C , the solidification end (fs=1) also moves backward about 1. 1 m. Based on simulation result to improve casting process, as casting speed increasing from 0. 60 m/min to 0. 76 m/min, with adding soft reduction, it is availebe to improve macrostructure quality.