Numerical Modeling of the Inclusion Behavior during AC Flash Butt Welding

被引:8
|
作者
Siddiqui, Md Irfanul Haque [1 ,2 ]
Geleta, Dereje Degefa [2 ]
Bae, Gyuyeol [3 ]
Lee, Joonho [2 ]
机构
[1] King Saud Univ, Dept Mech Engn, Riyadh 11362, Saudi Arabia
[2] Korea Univ, Dept Mat Sci & Engn, Seoul 02841, South Korea
[3] POSCO Global R&D Ctr, Steel Solut Res Lab, 100 Songdogwahak Ro, Incheon 21985, South Korea
关键词
AC flash welding; inclusion; interfacial tension; CFD; MECHANICAL-PROPERTIES; FAILURE ANALYSIS; IMPACT TOUGHNESS; FATIGUE BEHAVIOR; AFFECTED ZONES; WELDED-JOINTS; STEEL; MICROSTRUCTURE; TEMPERATURE; SIMULATION;
D O I
10.2355/isijinternational.ISIJINT-2020-143
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
The entrapment of inclusions in the solidified weld zone is detrimental to its mechanical properties. In an AC flash welding process, the upsetting rate, the initial temperature of the weld pool, and the size of inclusions may affect the final distribution of the inclusions. Additionally, the concentration of sulfur may induce Marangoni convection in the weld pool, which possibly affects the pushing and engulfment of inclusions by the solid at the solid-liquid interface. In the present work, a two-dimensional numerical model based on Computational Fluid Dynamics (CFD) has been developed to investigate the behavior of alumina inclusions during the AC flash welding of a thin SPFH590 steel plate. The Volume of Fluid (VOF) numerical model was coupled with the dynamic mesh model for the motion of plates, discrete phase for inclusion particles and solidification model. The simulation results show that the upsetting parameters significantly affect the overall inclusion motion. A high upsetting rate pushes the inclusions away from the welded joint. The high initial flash temperature does not affect the removal of inclusions from the weld zone. A similar outcome has been noted with respect to the increase in the diameter of the inclusions. Furthermore, the predicted results show that inclusions are prone to engulfment by the solidification front under the influence of higher interfacial tension between the inclusions and melt. Nevertheless, the inclusion displacement under the influence of an interfacial tension gradient is diminutive because of the rapid solidification rate of the weld pool.
引用
收藏
页码:2503 / 2511
页数:9
相关论文
共 50 条
  • [21] FLASH BUTT WELDING TUBES UNDER INTERNAL COUNTERPRESSURE
    KOKHANOV.NE
    WELDING PRODUCTION, 1968, 15 (02): : 46 - &
  • [22] DETERMINATION OF JOINT SHAPE IN FLASH BUTT WELDING.
    Lifshits, V.S.
    Rutner, Ya.F.
    Ustinovich, L.V.
    Welding Production (English translation of Svarochnoe Proizvodstvo), 1976, 23 (07): : 14 - 18
  • [23] FLASH BUTT WELDING OF MARINE PIPELINE MATERIALS.
    Turner Jr., D.L.
    Paton, B.E.
    Lebedev, V.K.
    Kutchuk-Yatsenko, S.I.
    Welding Journal (Miami, Fla), 1982, 61 (04): : 17 - 22
  • [24] SOME DEFECTS IN FLASH BUTT WELDING OF BOILER TUBES
    GELMAN, AS
    WELDING PRODUCTION, 1971, 18 (01): : 28 - &
  • [25] PREHEATING IN FLASH-BUTT WELDING OF BOILER TUBES
    GRIGOREV, VI
    WELDING PRODUCTION, 1975, 22 (04): : 29 - 33
  • [26] Research situation and development trends of flash butt welding
    Feng, Qiu-Yuan
    Li, Ting-Ju
    Ding, Zhi-Min
    Jin, Jun-Ze
    Cailiao Kexue yu Gongyi/Material Science and Technology, 2008, 16 (01): : 49 - 53
  • [27] FLASH BUTT WELDING - PROCESS, AUTOMATION AND APPLICATIONS.
    Jain, A.K.
    1600, (18):
  • [28] FLASH BUTT WELDING OF CAST IRONS TO OTHER METALS
    REGE, A
    INTERNATIONAL CAST METALS JOURNAL, 1979, 4 (02): : 28 - 56
  • [29] Flash butt resistance welding for duplex stainless steels
    Kuroda, Toshio
    Ikeuchi, Kenji
    Ikeda, Hyurna
    VACUUM, 2006, 80 (11-12) : 1331 - 1335
  • [30] Research on Application of High-Speed Data Acquisition system for AC Rail Flash-Butt Welding
    Lv, Qibing
    Tan, Keli
    Dai, Xiaogang
    Zhang, Xi
    MEASUREMENT TECHNOLOGY AND ITS APPLICATION, PTS 1 AND 2, 2013, 239-240 : 884 - +