Research on the effects of coordinate deformation on radial-axial ring rolling process by FE simulation based on in-process control

被引:36
作者
Zhu, Shuai [1 ]
Yang, He [1 ]
Guo, Lianggang [1 ]
Hu, Linlin [1 ]
Chen, Xiaoqing [1 ]
机构
[1] Northwestern Polytech Univ, State Key Lab Solidificat Proc, Sch Mat Sci & Engn, Xian 710072, Peoples R China
基金
中国国家自然科学基金;
关键词
Radial-axial ring rolling; Finite element method; Coordinate deformation; In-process control; Sleeve-type rings; ALLOY;
D O I
10.1007/s00170-014-5643-8
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Radial-axial ring rolling process is an irreplaceable metal forming technology for manufacturing various seamless rings. However, during the process, there exists complex interaction of deformations in the radial and axial directions of the ring, so the coordinate deformation between radial and axial directions has crucial influences on the quality of the rolled ring. In this paper, a reliable FE model based on in-process control for the radial-axial ring rolling process has been established under the ABAQUS/Explicit platform. In this model, the motions of the rolls are real-time controlled based on in-process measurement. Then, taking the ratio of axial to radial feed amount as the key parameter, we explored the effects of the coordinate deformation between radial and axial directions on the radial-axial rolling of sleeve-type rings by FE simulations. It is found that the rational diameter growth rates become fewer for making the sleeve-type ring roundness stay well as the ratio of axial to radial feed amount decreases. The ratio of axial to radial feed amount has slight effects on the precision of the ring diameter when the diameter growth rate is large. With the ratio of axial to radial feed amount increasing, the deformation of the sleeve-type ring becomes more nonuniform, while the temperature distribution becomes more uniform.
引用
收藏
页码:57 / 68
页数:12
相关论文
共 24 条
  • [1] The development of ring rolling technology
    Allwood, JM
    Tekkaya, AE
    Stanistreet, TF
    [J]. STEEL RESEARCH INTERNATIONAL, 2005, 76 (2-3): : 111 - 120
  • [2] Fu MJ., 2007, KINEMATICS MECH ANAL
  • [3] Energy consumption reduction in Ring Rolling processes: A FEM analysis
    Giorleo, L.
    Ceretti, E.
    Giardini, C.
    [J]. INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2013, 74 : 55 - 64
  • [4] Simulation for guide roll in 3D-FE analysis of cold ring rolling
    Guo, LG
    Yang, H
    Zhan, M
    Li, H
    Li, LY
    [J]. ADVANCES IN MATERIALS MANUFACTURING SCIENCE AND TECHNOLOGY, 2004, 471-472 : 760 - 764
  • [5] Towards a steady forming condition for radial-axial ring rolling
    Guo, Lianggang
    Yang, He
    [J]. INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2011, 53 (04) : 286 - 299
  • [6] Hua L., 2001, THEORY TECHNOLOGY RI
  • [7] Researches on the ring stiffness condition in radial-axial ring rolling
    Hua, Lin
    Pan, Libo
    Lan, Jian
    [J]. JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2009, 209 (05) : 2570 - 2575
  • [8] Finite element analysis of the ring rolling process with integrated closed-loop control
    Jenkouk, V.
    Hirt, G.
    Franzke, M.
    Zhang, T.
    [J]. CIRP ANNALS-MANUFACTURING TECHNOLOGY, 2012, 61 (01) : 267 - 270
  • [9] A control method of guide rolls in 3D-FE simulation of ring rolling
    Li, Lanyun
    Yang, He
    Guo, Lianggang
    Sun, Zhichao
    [J]. JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2008, 205 (1-3) : 99 - 110
  • [10] Modeling and simulation of cold rolling process for double groove ball-section ring
    Li, Lanyun
    Li, Xiao
    Liu, Jing
    He, Zhi
    [J]. INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2013, 69 (5-8) : 1717 - 1729