Innovative hybrid welding process for structural steelwork engineering-Laser submerged arc hybrid welding

被引:5
|
作者
Reisgen, Uwe [1 ]
Olschok, Simon [1 ]
Engels, Oliver [1 ]
机构
[1] Rhein Westfal TH Aachen, ISF Welding & Joining Inst, Pontstr 49, D-52062 Aachen, Nrw, Germany
关键词
laser beam welding; submerged Arc welding; hybrid welding; LB-SAW Hybrid welding;
D O I
10.2351/1.4983158
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The welding of thick metal sheets has become increasingly important for structural steelwork engineering applications (e.g., pipe-or crane building). Nowadays, welding tasks are performed using a time-consuming conventional submerged arc welding process. Here, a large number of welding passes are necessary, which leads to a thermally induced distortion. Therefore, there is a high demand for a welding process which allows a cost-effective welding of thick metal sheets. By the development of a laser beam submerged-arc hybrid welding process (LUPuS), a technique is created which combines the high penetration depth of the laser with the high thermal efficiency of the submerged arc process. This leads to synergy effects which predestine LUPuS for the given welding task. Earlier projects have shown a general feasibility of LUPuS. Steel plates with thicknesses of up to 50 mm have been joined without any welding issues using the double-sided single pass technique. However, different results of the notch impact test in the laser beam-dominated and submerged arc-dominated welding areas are noticeable. This contribution will demonstrate the effect on the mechanical-technological properties in the different welding seam areas by changing the flux and the wire of the submerged arc welding process. In order to investigate these properties, impact strength tests have been performed. Moreover, the dynamic behavior of the molten pool was studied. Furthermore, the results of the investigation of the weld metal structure are presented. (C) 2017 Laser Institute of America.
引用
收藏
页数:7
相关论文
共 50 条
  • [21] Welding of thin steel plates by hybrid welding process combined TIG arc with YAG laser
    Kim, T
    Suga, Y
    Koike, T
    JSME INTERNATIONAL JOURNAL SERIES A-SOLID MECHANICS AND MATERIAL ENGINEERING, 2003, 46 (03) : 202 - 207
  • [22] Laser-arc hybrid welding technology
    Zhu, Yifeng
    Dong, Chunlin
    Hangkong Zhizao Jishu/Aeronautical Manufacturing Technology, 2002, (11):
  • [23] Application of laser arc hybrid welding to shipbuilding
    Tsubota S.
    Koga H.
    Yosetsu Gakkai Shi/Journal of the Japan Welding Society, 2010, 79 (07): : 7 - 10
  • [24] Hybrid Laser Arc Welding of a Hardox® steel
    Chausse, Fabrice
    Bertrand, Emmanuel
    Paillard, Pascal
    Dubourg, Laurent
    Lemaitre, David
    Carin, Muriel
    JA 2013 - JOURNEES ANNUELLES DE LA SF2M 2013 / SF2M ANNUAL MEETING 2013, 2013, 7
  • [25] Development of laser-arc hybrid welding
    Ono, Moriaki
    Shinbo, Yukio
    Yoshitake, Akihide
    Ohmura, Masanori
    NKK Technical Review, 2002, (86): : 8 - 12
  • [26] Hybrid laser-arc pipeline welding
    EWI, Columbus,OH, United States
    不详
    不详
    不详
    不详
    不详
    Weld. Cutt., 2008, 6 (342-345):
  • [27] Synergetic effects of hybrid laser/arc welding
    Hu, B
    den Ouden, G
    SCIENCE AND TECHNOLOGY OF WELDING AND JOINING, 2005, 10 (04) : 427 - 431
  • [28] An investigation on stability of laser hybrid arc welding
    Moradi, Mahmoud
    Ghoreishi, Majid
    Frostevarg, Jan
    Kaplan, Alexander F. H.
    OPTICS AND LASERS IN ENGINEERING, 2013, 51 (04) : 481 - 487
  • [29] Laser-arc hybrid welding process of galvanized steel sheets
    Matsusaka, Souta
    Uezono, Toshiro
    Tsumura, Takuya
    Tanaka, Manabu
    Watanabe, Takehiro
    ADVANCED WELDING AND MICRO JOINING / PACKAGING FOR THE 21ST CENTURY, 2008, 580-582 : 355 - +
  • [30] Innovative hybrid welding process in an industrial application
    Kaierle, S
    Bongard, K
    Dahmen, M
    Poprawe, R
    ICALEO(R) 2000: PROCEEDINGS OF THE LASER MATERIALS PROCESSING CONFERENCE, VOL 89, 2000, 89 : C91 - C98