Enhanced finite element analysis of material deformation and strain distribution in spinning of 42CrMo steel tubes at elevated temperature

被引:28
|
作者
Zoghi, Hamed [1 ]
Arezoodar, Alireza Fallahi [1 ]
Sayeaftabi, Mojtaba [1 ]
机构
[1] Amirkabir Univ Technol, Dept Mech Engn, Tehran, Iran
关键词
Tube spinning; Strain distribution; Finite element; Adaptive meshing; Parallel processing;
D O I
10.1016/j.matdes.2012.11.049
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Tube spinning is a commonly used process for manufacturing axisymmetric parts in automotive and aerospace industries and a method for fabricating pressure vessels. Generally the studies of tube spinning process have been limited to thin wall tubes and the FE (Finite Element) simulations have usually incorporated shell elements (incapable of proper investigation of strain diversity in thickness). Therefore, the material deformation in thickness has not been properly investigated. In this paper, spinning for manufacturing a dome form on tube end is analyzed using an enhanced explicit 3-D finite element model, supported by an experiment. Adaptive meshing, mass scaling and parallel processing techniques are incorporated to obtain sound simulations, using a high temperature, strain rate sensitive material model. The strain distribution in different thickness layers and axial positions of the curved tube are studied and deformation modes are interpreted. The distribution of the axial strain along the tube axis in different thickness layers indicates the bending mode deformation at the distant positions from the free end and elongation at the free end, where shear also increases significantly. In all, a comprehensive description of the plastic deformation in tube spinning, considering the strain variation in thickness, is presented in this paper. Roller force in axial direction changes sign because of change in relative contact position of the roller and tube. The radial force is also shown to be slightly decreasing towards the end. (c) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:234 / 242
页数:9
相关论文
共 39 条
  • [1] Effect of temperature and strain rate on the compressive deformation behavior of 42CrMo steel
    Lin, Y. C.
    Chen, Ming-Song
    Zhong, Jue
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2008, 205 (1-3) : 308 - 315
  • [2] Effects of deformation temperatures on stress/strain distribution and microstructural evolution of deformed 42CrMo steel
    Lin, Y. C.
    Chen, Ming-Song
    Zhong, Jue
    MATERIALS & DESIGN, 2009, 30 (03) : 908 - 913
  • [3] Constitutive modeling for elevated temperature flow behavior of 42CrMo steel
    Lin, Y. C.
    Chen, Ming-Song
    Zhong, Jue
    COMPUTATIONAL MATERIALS SCIENCE, 2008, 42 (03) : 470 - 477
  • [4] Deformation Behavior and Constitutive Equation of 42CrMo Steel at High Temperature
    Liu, Hongqiang
    Cheng, Zhicheng
    Yu, Wei
    Wang, Gaotian
    Zhou, Jie
    Cai, Qingwu
    METALS, 2021, 11 (10)
  • [5] Prediction of 42CrMo steel flow stress at high temperature and strain rate
    Lin, Y. C.
    Chen, Ming-Song
    Zhong, Jue
    MECHANICS RESEARCH COMMUNICATIONS, 2008, 35 (03) : 142 - 150
  • [6] Finite Element Simulation for Pre-stress Hard Cutting Process of 42CrMo Steel
    Ye, B. Y.
    Liu, J. P.
    Wu, C. L.
    Liu, X. L.
    Peng, R. T.
    Zhao, X. Z.
    MACHINING AND ADVANCED MANUFACTURING TECHNOLOGY X, 2010, 431-432 : 309 - 313
  • [7] The effect of high-temperature ECAP on dynamic recrystallization behavior and material strength of 42CrMo steel
    Ji, Hong-bin
    Wang, Jian-mei
    Wang, Zhen-yu
    Li, Yang
    Cheng, Xian-hua
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2023, 887
  • [8] Kinetics analysis and enhancement mechanism of aluminum-enhanced plasma nitriding for 42CrMo steel
    Zhuang, Huanyu
    Kang, Qianfei
    Xie, Yixin
    Wu, Meihong
    Wei, Kunxia
    Yang, Xiaohong
    Hu, Jing
    JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2023, 24 : 6588 - 6594
  • [9] Finite element analysis on axial-pushed incremental warm rolling process of spline shaft with 42CrMo steel and relevant improvement
    Min-Chao Cui
    Sheng-Dun Zhao
    Da-Wei Zhang
    Chao Chen
    Yong-Yi Li
    The International Journal of Advanced Manufacturing Technology, 2017, 90 : 2477 - 2490
  • [10] Numerical simulation for stress/strain distribution and microstructural evolution in 42CrMo steel during hot upsetting process
    Lin, Y. C.
    Chen, Ming-Song
    Zhong, Jue
    COMPUTATIONAL MATERIALS SCIENCE, 2008, 43 (04) : 1117 - 1122