Inhibition Behavior of Edge Cracking in the AZ31B Magnesium Alloy Cold Rolling Process with Pulsed Electric Current

被引:5
|
作者
Sun, Jingna [1 ,2 ]
Zhang, Junpeng [1 ,2 ]
Liu, Dongdong [1 ,2 ]
Huang, Huagui [1 ,2 ]
Yan, Meng [1 ,2 ]
机构
[1] Yanshan Univ, Natl Engn Res Ctr Equipment & Technol Cold Strip R, Qinhuangdao 066004, Peoples R China
[2] Yanshan Univ, Coll Mech Engn, Qinhuangdao 066004, Peoples R China
基金
中国国家自然科学基金;
关键词
AZ31B magnesium alloy; pulsed electric current; cold rolling; edge cracking; MECHANICAL-PROPERTIES; MICROSTRUCTURE; DEFORMATION; TEXTURE; RECRYSTALLIZATION; MG-3AL-1ZN; EVOLUTION; SPEED;
D O I
10.3390/met13020274
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
To solve the edge crack problem of AZ31B magnesium alloy cold rolling, a strong pulsed electric current was introduced to the cold rolling process. The influence of intensity, frequency, width of pulsed electric current and other parameters on edge cracking of AZ31B magnesium alloy plate cold rolling was analyzed based on the principle of a single variable. According to the experimental results, the assistance of pulsed electric current cut down edge cracking and the inhibition effect increased obviously with larger current parameters. When the parameters of pulsed electric current reached 4800 A, 500 Hz, 50 mu s, zero edge cracking was achieved. Statistics of edge cracks, rolling load change, and microstructure analysis showed that the current thermal effect was not obvious and non-thermal effect played a more important role in the rolling process under pulse electric current. Edge cracks initiate at the shear bands. The addition of pulse current increases the number of shear bands and presents a blanket structure. Therefore, the amount of strain experienced by a single shear band decrease, which has a positive effect on inhibiting the formation of edge cracks. Furthermore, electroplastic rolling refines the grains and weakens the basal plane. As the current parameter increases, the hardness of the magnesium strip decreases and the yield and tensile strengths increase.
引用
收藏
页数:14
相关论文
共 50 条
  • [41] Research of Submerged Friction Stir Welded AZ31B Magnesium Alloy
    Wang Kuaishe
    Zhou Longhai
    Wu Jialei
    Wang Wen
    RARE METAL MATERIALS AND ENGINEERING, 2012, 41 (06) : 1111 - 1115
  • [42] Influence of initial texture on formability of AZ31B magnesium alloy sheets at different temperatures
    Zhang, Hua
    Huang, Guangsheng
    Kong, Deqiang
    Sang, Gaofeng
    Song, Bo
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2011, 211 (10) : 1575 - 1580
  • [43] Temperature-Changed Rolling Process and the Flow Stress of As-cast AZ31B Magnesium Alloy
    Jia Weitao
    Ma Lifeng
    Ma Ziyong
    Jiang Yaping
    Xu Haijie
    Liu Pengtao
    RARE METAL MATERIALS AND ENGINEERING, 2016, 45 (01) : 152 - 158
  • [44] Pulse current assisted drawability of AZ31B magnesium alloy sheets
    Song, J. H.
    Choi, S.
    Kang, M. J.
    Kim, D.
    Lee, M-G
    Lim, C. Y.
    IDDRG2016 CONFERENCE ON CHALLENGES IN FORMING HIGH-STRENGTH SHEETS, 2016, 159
  • [45] Twinning in rolled AZ31B magnesium alloy under free-end torsion
    Carneiro, Luiz
    Culbertson, Duke
    Yu, Qin
    Jiang, Yanyao
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2021, 801
  • [46] Ultrasonic welding of AZ31B magnesium alloy
    Chen, Jian
    Lim, Yong-Chae
    Huang, Hui
    Feng, Zhili
    Sun, Xin
    MRS BULLETIN, 2019, 44 (08) : 630 - 636
  • [47] Mesoscale Modeling and Validation of Texture Evolution during Asymmetric Rolling and Static Recrystallization of Magnesium Alloy AZ31B
    Radhakrishnan, B.
    Gorti, S. B.
    Stoica, G. M.
    Muralidharan, G.
    Stoica, A. D.
    Wang, X. -L.
    Specht, E. D.
    Kenik, E.
    Muth, T.
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2012, 43A (05): : 1509 - 1516
  • [48] Forming characteristics of AZ31B magnesium alloy in bidirectional extrusion process
    Yoon, D. J.
    Lim, S. J.
    Jeong, H. G.
    Kim, E. Z.
    Cho, C. D.
    JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2008, 201 (1-3) : 179 - 182
  • [49] Critical Rolling Process Parameters for Dynamic Recrystallization Behavior of AZ31 Magnesium Alloy Sheets
    Wang, Wenke
    Miao, Qing
    Chen, Xuemin
    Yu, Yang
    Zhang, Wencong
    Chen, Wenzhen
    Wang, Erde
    MATERIALS, 2018, 11 (10)
  • [50] MONOTONIC AND MULTIAXIAL CYCLIC BEHAVIOR OF THE EXTRUDED AZ31B MAGNESIUM ALLOY
    Albinmousa, Jafar
    Jahed, Hamid
    Lambert, Steve
    MAGNESIUM TECHNOLOGY 2010, 2010, : 261 - 266