• CN:11-2187/TH
  • ISSN:0577-6686

›› 2014, Vol. 50 ›› Issue (14): 110-117.

• 论文 • 上一篇    下一篇

环坯温度分布状态对径轴向轧制变形遗传影响

邓加东;华林;钱东升   

  1. 武汉理工大学汽车工程学院;武汉理工大学材料科学与工程学院;武汉理工大学现代汽车零部件技术湖北省重点实验室
  • 发布日期:2014-07-20

Genetic Influences of Blank Temperature Distribution on Radial-axial Ring Rolling Deformation

DENG Jiadong; HUA Lin; QIAN Dongsheng   

  1. School of Automotive Engineering, Wuhan University of Technology;Hubei Key Laboratory of Advanced Technology of Automotive Parts, Wuhan University of Technology;School of Materials Science and Engineering, Wuhan University of Technology
  • Published:2014-07-20

摘要: 径轴向轧制是制造大型无缝锻态组织环件的先进塑性成形工艺。径轴向轧制生产中,由于环坯锻造时不同部位的变形和传热条件不同,导致环坯温度分布不均匀,会对轧制过程环件变形和组织演变产生不同的遗传影响,而现有的研究都忽略了这一因素。为此,采用仿真模拟分析方法来研究环坯温度分布状态对径轴向轧制变形的遗传影响。基于SIMUFACT有限元分析软件平台,建立42CrMo大型环件径轴向轧制三维热-力-组织多场耦合仿真模型,并通过耦合环坯冷却模型建立6种不同环坯温度分布状态。通过模拟分析,研究6种环坯温度分布状态对轧制成形环件应变、温度及晶粒尺寸大小及分布的不同遗传影响规律。结果表明,环坯上下表面低温分布状态导致环件轴向应变、温度和晶粒尺寸均值减小,轴向应变均匀性增加、轴向温度和晶粒尺寸均匀性减小;环坯内外表面低温分布状态导致环件径向应变、温度和晶粒尺寸均值减小,径向应变均匀性增加,径向温度和晶粒尺寸均匀性减小。研究结果为径轴向轧制合理调控环坯温度分布状态从而提高成形环件质量提供科学依据。

关键词: 环件径轴向轧制;环坯;温度分布状态;遗传影响;仿真模拟

Abstract: Radial-axial ring rolling is an advanced metal plastic forming technique to manufacture large size seamless rings with as-forged microstructure. The deformation degree and heat transfer condition of different blank parts are different during blank forging. As a result, the temperature distribution of blank is not uniform, which produces different genetic influences on deformation and microstructure of rolled ring in radial-axial ring rolling process. However, most present researches ignore this factor. Thus, an analog simulation method is adopted to study the genetic influences of blank temperature distribution on radial-axial ring rolling deformation. A reliable 3D coupled thermo-mechanical-micro finite element(FE) model of radial-axial ring rolling is established under SIMUFACT software environment, and six different conditions of blank temperature distribution are realized by using cooling model before ring rolling. Through simulation and analysis, the genetic influence laws of the six different blank temperature distributions on strain, temperature and grain size of rolled rings are investigated. The results show that in the case of lower temperature distribution of the blank upper and lower surface, the axial average values of strain, temperature and grain size of rolled rings are decreased respectively, the axial uniform value of strain is increased, and the axial uniform values of temperature and grain size are decreased respectively. In the case of lower temperature distribution of the blank inner and outer surface, the radial average values of strain, temperature and grain size of rolled rings are decreased respectively, the radial uniform value of strain is increased, and the radial uniform values of temperature and grain size are decreased respectively. The research results will provide a scientific guidance for reasonable control of the blank temperature distribution to improve the quality of rolled rings in actual radial-axial ring rolling process.

Key words: radial-axial ring rolling;blank;temperature distribution;genetic influences;analog simulation

中图分类号: