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 ›› 2025, Vol. 46 ›› Issue (2): 93-97.DOI: 10.20057/j.1003-8620.2024-00178

• 形变与相变 • 上一篇    下一篇

轧制工艺对410 mm×530 mm连铸坯产材等轴晶区的影响

任红娃, 刘军利, 蒋新华, 赵骏   

  1. 成都冶金实验厂有限公司,成都 611330
  • 收稿日期:2024-07-16 出版日期:2025-03-30 发布日期:2025-03-13
  • 作者简介:任红娃(1990—),男,本科, 工程师;

Influence of Rolling Process on the Equiaxed Grain Zone of Bars Produced by 410 mm × 530 mm Continuous Casting Billet

Ren Hongwa, Liu Junli, Jiang Xinhua, Zhao Jun   

  1. Chengdu Metallurgical Experimental Factory Co., Ltd., Chengdu 611330,China
  • Received:2024-07-16 Published:2025-03-30 Online:2025-03-13

摘要: 大端面连铸坯在轧制大规格棒材时,容易出现中心疏松和缩孔、中心粗等轴晶区分布不规则等一系列内部质量问题。设计了四种不同的BD轧机(BD为英文开坯缩写,文中试验所采用的为1250双辊可逆式轧机)开坯工艺对42CrMo钢410 mm×530 mm规格的连铸坯轧制为255 mm×255 mm尺寸过程进行研究,先采用有限元模拟软件对轧制过程进行仿真模拟,再经过工业试验验证对最终180 mm棒材成品进行低倍检验。结果表明,采用大压下量的矩形→方形→矩形交替变形机制工艺进行轧制,可有效改善产材心部疏松、缩孔缺陷,同时连铸坯心部粗等轴晶遗传至产材的尺寸接近1:1,优化产材组织对称性,便于客户后续使用。并且通过对模拟结果和工业试验检验结果对比分析显示,有限元仿真技术在轧制变形方面的应用具有较高的准确性,通过有限元仿真模拟轧制过程可有效缩短试验周期,降低工艺优化成本。

关键词: 410 mm×530 mm大方坯, 心部等轴晶区, 对称性, 变形渗透, 42CrMo钢

Abstract: The large end face continuous casting billet is prone to a series of internal quality problems such as centre sparsity and shrinkage holes, irregular distribution of centre coarse equiaxial crystal zone when rolling large-size bars. Designed four different BD mills (BD is abbreviated for English blank, 1250 double roll reversible rolling mill used in this test) the open billet process on 42CrMo steel 410 mm × 530 mm specifications of continuous casting billet rolled to 255 mm × 255 mm size process to study, first using finite element simulation software for simulation of the rolling process, and then after the verification of industrial tests on the final 180 mm bar finished products for macrostructure test. The results show that the use of large reduction amount rectangle → square → rectangle alternating deformation mechanism process for rolling, can effectively improve the heart of the material produced loose, shrinkage defects, and at the same time, continuous casting billet heart of coarse isometric crystals inherited to the size of the material produced is close to 1:1 to optimize constructure symmetry of the material produced to facilitate the subsequent use of the customer. Moreover, the comparative analysis of the simulation results and industrial test results shows that the application of finite element simulation technology in rolling deformation has high accuracy, and the rolling process through finite element simulation can effectively shorten the test period and reduce the cost of process optimization.

Key words: 410 mm×530 mm Large Square Bloom, Core Equiaxed Crystal, Symmetry, Deformation Infiltration, 42CrMo Steel

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