The effect of the solidification conditions on the structure and mechanical properties of high-strength 1960 (in Russia) aluminum alloy

被引:1
|
作者
Khalikova, G. R. [1 ]
Trifonov, V. G. [1 ]
机构
[1] RAS, Inst Met Superplast Problems, Khalturin St 39, Ufa 450001, Russia
来源
关键词
squeeze casting; aluminum alloy; structure; mechanical properties;
D O I
10.22226/2410-3535-2012-3-147-151
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The effects of the die temperature and pressure applied to the liquid melt on structural changes and mechanical properties of wrought 1960 alloy (in Russia) obtained by squeeze casting were investigated. It was shown that a dendrite structure containing primary intermetallic phase particles is formed in the alloy during squeeze casting at the die temperatures 200 and 400 degrees C and applied pressures of 90 and 350 MPa. The cast billets without any macroscopic defects can be obtained only at the die temperature of 400 degrees C. At this temperature, an increase in the applied pressure results in practically no change in the volume fraction of intermetallic phase particles being approximately equal to 9%, and in the increase of the dendrite crystal size from similar to 500 to similar to 600 mu m. The strength of the alloy raises with increase of the die temperatures and applied pressure. At the same time, the ductility of the alloy was less than 1%.
引用
收藏
页码:147 / 151
页数:5
相关论文
共 50 条
  • [21] Process of friction-stir welding high-strength aluminum alloy and mechanical properties of joint
    王大勇
    冯吉才
    郭德伦
    孙成彬
    栾国红
    郭和平
    China Welding, 2004, (02) : 81 - 84
  • [22] Mechanical Tensioning of High-Strength Aluminum Alloy Friction Stir Welds
    Altenkirch, J.
    Steuwer, A.
    Peel, M. J.
    Withers, P. J.
    Williams, S. W.
    Poad, M.
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2008, 39A (13): : 3246 - 3259
  • [23] Mechanical Tensioning of High-Strength Aluminum Alloy Friction Stir Welds
    J. Altenkirch
    A. Steuwer
    M.J. Peel
    P.J. Withers
    S.W. Williams
    M. Poad
    Metallurgical and Materials Transactions A, 2008, 39 : 3246 - 3259
  • [24] Melting and Solidification Behavior of High-Strength Aluminum Alloy during Selective Laser Melting
    Kyogoku, Hideki
    Yamamoto, Kohei
    Ikeshoji, Toshi-Taka
    Nakamura, Kazuya
    Yonehara, Makiko
    THERMEC 2018: 10TH INTERNATIONAL CONFERENCE ON PROCESSING AND MANUFACTURING OF ADVANCED MATERIALS, 2018, 941 : 1300 - 1305
  • [25] Effect of zirconium on the mechanical properties of a super-high strength aluminum alloy
    Yang, Shoujie
    Xie, Youhua
    Zhu, Na
    Dai, Shenglong
    Lu, Zheng
    Su, Bin
    Yan, Minggao
    2002, Chinese Journal of Materials Research (16):
  • [26] Effect of pulsed current welding on mechanical properties of high strength aluminum alloy
    Balasubramanian, V.
    Ravisankar, V.
    Reddy, G. Madhusudhan
    INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY, 2008, 36 (3-4): : 254 - 262
  • [27] Effect of pulsed current welding on mechanical properties of high strength aluminum alloy
    V. Balasubramanian
    V. Ravisankar
    G. Madhusudhan Reddy
    The International Journal of Advanced Manufacturing Technology, 2008, 36 : 254 - 262
  • [28] Structure and mechanical properties of Ti-Cu-Ni cast alloy with high-strength
    Amiya, K
    Soejima, H
    Nishiyama, N
    Inoue, A
    Metastable, Mechanically Alloyed and Nanocrystalline Materials, 2005, 24-25 : 539 - 542
  • [29] Effect of a high temperature and hydrostatic pressure on the structure and the properties of a high-strength cast AM5 (the 201.2 alloy type) aluminum alloy
    Akopyan T.K.
    Padalko A.G.
    Belov N.A.
    Shurkin P.K.
    Akopyan, T.K. (aktorgom@gmail.com), 1600, Izdatel'stvo Nauka (2016): : 657 - 662
  • [30] Effects of Zirconium on the Structure and Mechanical Properties of High-Strength Low-Alloy Steels under Quenched or Tempered Conditions
    Wang, Feng
    Zheng, Xueping
    Long, Jun
    Zheng, Kaihong
    Zheng, Zhibin
    STEEL RESEARCH INTERNATIONAL, 2022, 93 (11)