Modeling friction stir welding process of aluminum alloys

被引:0
|
作者
J. -H. Cho
S. H. Kang
H. N. Han
K. H. Oh
机构
[1] Korea Institute of Materials Science,School of Material Science and Engineering
[2] Seoul National University,undefined
来源
关键词
friction stir welding; finite element; aluminum alloys; hardness; crystallographic texture;
D O I
暂无
中图分类号
学科分类号
摘要
The friction stir welding (FSW) process of aluminum alloys has been modeled using a two-dimensional Eulerian formulation. Velocity field and temperature distribution are strongly coupled and solved together using a standard finite element scheme. A scalar state variable for hardening is also integrated using a streamline integration method along streamlines. A viscoplastic constitutive equation to consider plastic flow and strength variations was implemented for the process modeling. Precipitates inside AA6061 alloys are sensitive to elevated temperatures and affect strength evolution with temperature. The overall effects of the precipitate variations with temperature on strength were reflected using temperature-dependent material parameters. The material parameters of constitutive equations were obtained from isothermal compression tests of various temperatures and strain rates. The effects of FSW process conditions on heating and hardening were investigated mainly near the tool pin. The microhardness distribution of the weld zone was compared with the prediction of strength. In addition, crystallographic texture evolutions were also predicted and compared with the experimental results.
引用
收藏
相关论文
共 50 条
  • [21] Friction stir welding characteristics of two aluminum alloys
    刘会杰
    藤井英俊
    前田将克
    野城清
    Transactions of Nonferrous Metals Society of China, 2003, (05) : 1108 - 1111
  • [22] Friction stir welding of high strength aluminum alloys
    Jata, KV
    ALUMINIUM ALLOYS: THEIR PHYSICAL AND MECHANICAL PROPERTIES, PTS 1-3, 2000, 331-3 : 1701 - 1712
  • [23] Progress in Friction Stir Welding of Polymer and Aluminum Alloys
    Kasgari, S. A.
    Aliha, M. R. M.
    Sadjadi, S. J.
    Sadowski, T.
    Berto, F.
    MECHANICS OF COMPOSITE MATERIALS, 2024, 59 (06) : 1083 - 1100
  • [24] Friction stir welding characteristics of two aluminum alloys
    Liu, HJ
    Fujii, H
    Masakatsu, M
    Nogi, K
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2003, 13 (05) : 1108 - 1111
  • [25] Progress in Friction Stir Welding of Polymer and Aluminum Alloys
    S. A. Kasgari
    M. R. M. Aliha
    S. J. Sadjadi
    T. Sadowski
    F. Berto
    Mechanics of Composite Materials, 2024, 59 : 1083 - 1100
  • [26] Friction Stir Welding of Fillet Joints in Aluminum Alloys
    Chernykh I.K.
    Vasil’ev E.V.
    Kushnareva A.G.
    Minibaev E.R.
    Russian Engineering Research, 2022, 42 (8) : 812 - 817
  • [27] Friction Stir Weld Modeling of Aluminum Alloys
    Cho, Jaehyung
    Kang, Suk-Hoon
    Oh, Kyu Hwan
    Han, Heung Nam
    Kang, Suk-Bong
    ADVANCED MATERIALS AND PROCESSING, 2007, 26-28 : 999 - +
  • [28] Friction stir process welds aluminum alloys
    Dawes, CJ
    Thomas, WM
    WELDING JOURNAL, 1996, 75 (03) : 41 - 45
  • [29] Modeling and Optimization of Friction Stir Welding Process Parameters for Dissimilar Aluminium Alloys
    Kumar, Amit
    Khurana, M. K.
    Singh, Gaurav
    MATERIALS TODAY-PROCEEDINGS, 2018, 5 (11) : 25440 - 25449
  • [30] Mathematical Modeling of Process of the Friction Stir Welding
    Rzaev, Radmir
    Dzhalmukhambetov, Azat
    Chularis, Alexander
    Valisheva, Alfiya
    MATERIALS TODAY-PROCEEDINGS, 2019, 11 : 591 - 599