The Prediction of Microstructure Evolution of 6005A Aluminum Alloy in a P-ECAP Extrusion Study

被引:0
|
作者
Shi Lei
Wen Jiu-Ba
Ren Chang
机构
[1] Henan University of Science and Technology,School of Material Science and Engineering
[2] Luoyang Institute of Science and Technology,School of Material Science and Engineering
[3] Northwestern Polytechnical University,School of Materials Science and Engineering
关键词
aluminum alloy; dynamic recrystallization; finite element modeling (FEM); microstructure prediction;
D O I
暂无
中图分类号
学科分类号
摘要
Finite element modeling (FEM) was applied for predicting the recrystallized structure in extruded 6005 aluminum alloy, and simulated results were experimentally validated. First, microstructure evolution of 6005 aluminum alloy during deformation was studied by means of isothermal compression test, where the processing parameters were chosen to reproduce the typical industrial conditions. Second, microstructure evolution was analyzed, and the obtained information was used to fit a dynamic recrystallization model implementing inside the DEFORM-3D FEM code environment. FEM of deformation of 6005 aluminum has been established and validated by microstructure comparison. Finally, the obtained dynamic recrystallization model was applied to tube extrusion by using a portholes-equal channel angular pressing die. The finite element analysis results showed that coarse DRX grains occur in the extruded tube at higher temperature and in the extruded tube at the faster speed of the stem. The test results showed material from the front end of the extruded tube has coarse grains (60 μm) and other extruded tube has finer grains (20 μm).
引用
收藏
页码:2566 / 2575
页数:9
相关论文
共 50 条
  • [1] The Prediction of Microstructure Evolution of 6005A Aluminum Alloy in a P-ECAP Extrusion Study
    Shi Lei
    Wen Jiu-Ba
    Ren Chang
    JOURNAL OF MATERIALS ENGINEERING AND PERFORMANCE, 2018, 27 (05) : 2566 - 2575
  • [2] Study of Temperature Evolution and Metal Flow of 6005A Aluminum Alloy during Indirect Extrusion
    Qiao, Jisen
    Li, Fi
    Xia, Tiandong
    MECHANICAL, MATERIALS AND MANUFACTURING ENGINEERING, PTS 1-3, 2011, 66-68 : 164 - 169
  • [3] Simulation and Experimental Study on Grain Size Evolution of P-ECAP Extrusion Magnesium Alloy Hollow Plate
    Shi L.
    Liu Y.
    Shen J.
    Jin W.
    Wang L.
    Zhang W.
    Cailiao Daobao/Materials Reports, 2019, 33 (06): : 2019 - 2024
  • [4] Research on model of 6005a aluminum alloy
    Zhang, H.Q.
    Ji, H.C.
    Pei, W.C.
    Li, Y.G.
    Metalurgija, 2021, 60 : 261 - 264
  • [5] RESEARCH ON MODEL OF 6005A ALUMINUM ALLOY
    Zhang, H. Q.
    Ji, H. C.
    Pei, W. C.
    Li, Y. G.
    METALURGIJA, 2021, 60 (3-4): : 261 - 264
  • [6] Abnormal grain growth behavior and mechanism of 6005A aluminum alloy extrusion profile
    Zhao, Haixiao
    Sun, Lu
    Zhao, Guoqun
    Yu, Junquan
    Liu, Fei
    Sun, Ximan
    Lv, Zhengfeng
    Cao, Shanpeng
    JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2023, 157 : 42 - 59
  • [7] Influences of aging temperature and time on microstructure and mechanical properties of 6005A aluminum alloy extrusions
    Ding Xian-fei
    Sun Jing
    Ying Jia
    Zhang Wei-dong
    Ma Ji-jun
    Wang Li-chen
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2012, 22 : S14 - S20
  • [8] Effect of Layer Arrangement on Microstructure and Mechanical Properties of 6005A Aluminum Alloy MIG Joints
    Li S.
    Han X.
    Wu L.
    Liu Y.
    Wang P.
    Song X.
    Tan C.
    Cailiao Daobao/Materials Reports, 2022, 36 (17):
  • [9] High temperature constitutive model of 6005a aluminum alloy
    Yao, R.
    Ji, H.C.
    Jin, J.F.
    Shao, X.Y.
    Long, H.Y.
    Metalurgija, 2021, 60 : 265 - 268
  • [10] HIGH TEMPERATURE CONSTITUTIVE MODEL OF 6005A ALUMINUM ALLOY
    Yao, R.
    Ji, H. C.
    Jin, J. F.
    Shao, X. Y.
    Long, H. Y.
    METALURGIJA, 2021, 60 (3-4): : 265 - 268