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 ›› 2005, Vol. 26 ›› Issue (6): 29-31.

• 试验研究 • 上一篇    下一篇

CSP连轧过程金属变形的热力耦合模拟分析

李传瑞,王宝峰,麻永林   

  1. 安徽工程科技学院,芜湖241000;
    内蒙古科技大学,包头014010
  • 收稿日期:2005-06-22 出版日期:2005-11-08 发布日期:2023-04-12
  • 作者简介:李传瑞(1971-),男,讲师,硕士研究生,20(M年内蒙古科 技大学毕业,从事材料加工工程研究。

An Analysis on Coupled Thermal- Mechanical Simulation of Metal Deformation in Continuous Rolling of Compact Strip Production

Li Chuanrui,Wang Baofeng, Ma Yonglin   

  1. Anhui University of Technology and Science, Wuhu 241000;
    Inner Mongolia University of Technology and Science, Baotou 014010
  • Received:2005-06-22 Published:2005-11-08 Online:2023-04-12

摘要: 借助Marc商用软件,采用弹塑性大变形热力耦合有限元法(FEM),对包钢生产的1 500 mm×68mm薄板坯CSP(紧凑式带材生产)轧制第一道次的热轧过程进行了模拟。分析了变形区内轧材等效应力场、应变场及应变速率的分布和变化规律。结果表明在轧件变形区内,等效应力沿轧制方向逐渐增大,在中性面附近达到最大值(95.20 MPa),后又逐渐减少;等效应变亦沿轧制方向逐渐增大,在轧件出口处达到最大值(0.70);在轧件入口端表面附近等效应变速率有最大值,为20.74 s-1。模拟计算的轧制力为22 203 kN,现场测得的轧制力为22 239 kN,预测误差为0.16%。

关键词: CSP, 薄板坯热轧, 热力耦合, 有限元法, 模拟分析

Abstract: The first pass hot rolling process of compact strip production of 1 500 mm x 68 mm thin slab at Baotou Iron and Steel has been simulated by Marc commercial software with the aid of elastic-plastic thermal-mechanical coupled finite element method (FEM) . And the distribution and change of equivalent stress field, strain field and strain rate of rolling stock deforming region were analyzed. The results showed that in rolling stock deforming zone the equivalent stress gradually increased along the direction of rolling and came to maximum value (95.20 MPa) nearby neutral face, than gradually decreased; the equivalent strain also gradually increased along the direction of rolling and came to maximum value (0.70) at outlet of workpiece; and the equivalent strain rate had a maximum value nearby surface at inlet of workpiece that was 20.74 s-1. The rolling force simulation-calculated was 22 203 kN, which measured at situ was 22 239 kN, so the prediction error was 0.16%.

Key words: CSP, Thin Slab Hot Rolling, Thermal-Mechanical Coupling, FEM, Simulation Analysis