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首页> 外文期刊>Materials & design >Gap-free fibre laser welding of Zn-coated steel on Al alloy for light-weight automotive applications
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Gap-free fibre laser welding of Zn-coated steel on Al alloy for light-weight automotive applications

机译:用于轻型汽车应用的铝合金上的锌涂层钢的无间隙光纤激光焊接

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摘要

As a result of new policies related to global warming announced by the European Union, avoiding unnecessary energy waste and reducing environmental pollution levels are becoming a major issue in the automotive industry. Accordingly, the lap welding of Zn-coated steels process, which is commonly used for producing car doors, has been gradually developed to lap welding of Zn-coated steel to light materials, such as AI alloy, Mg alloy and composite materials, in order to effectively reduce the vehicle weight. In certain part of car manufacture, organic glues are used to temporally join the Zn-coated steels and Al alloys before permanent welding takes place. The stability of such temporary joining by glues needs improving. Laser "stitching" or low strength welding could be considered as an alternative. However, challenges exist in joining Zn-coated steel on Al alloy by laser welding, due to significant differences of material properties between the two welding materials. Porosity, spatter and intermetallic brittle phases are readily produced in the weld. In this study, the effects of welding speed, laser power, number of the welding passes and type of shielding gas in gap-free welding of Zn-coated steel on Al alloy were investigated using a 1 kW single mode continuous wave fibre laser. Results show that a weld with higher shear strengths in the laser stitching application and less intermetallic phases could be obtained when nitrogen gas was used as the shielding gas. The corrosion resistance and the surface finish of the weld could be improved in double pass welding, especially when argon gas was used as the shielding gas.
机译:由于欧盟宣布了与全球变暖相关的新政策,避免不必要的能源浪费和降低环境污染水平已成为汽车行业的主要问题。因此,已经逐渐发展了通常用于生产车门的镀锌钢的搭接焊接,以便将镀锌钢的搭接焊接到轻质材料上,例如AI合金,Mg合金和复合材料。有效减轻车辆重量。在汽车制造的某些部分中,在进行永久焊接之前,有机胶被用来暂时连接镀锌钢和铝合金。这种通过胶临时连接的稳定性需要提高。可以考虑使用激光“缝合”或低强度焊接。然而,由于两种焊接材料之间的材料性质的显着差异,在通过激光焊接在铝合金上接合镀锌钢方面存在挑战。焊缝中容易产生气孔,飞溅和金属间脆性相。在这项研究中,使用1 kW单模连续波光纤激光器研究了Zn涂层钢在铝合金上的无间隙焊接中的焊接速度,激光功率,焊道数量和保护气体类型的影响。结果表明,使用氮气作为保护气体时,在激光缝合应用中具有较高的剪切强度和较少的金属间相的焊缝。在双道次焊接中,特别是使用氩气作为保护气体时,可以提高焊缝的耐腐蚀性和表面光洁度。

著录项

  • 来源
    《Materials & design》 |2011年第2期|p.495-504|共10页
  • 作者单位

    Laser Processing Research Centre, School of Mechanical, Aerospace and Civil Engineering, The University of Manchester, Sackville Street, Manchester M60 JQD, United Kingdom;

    Laser Processing Research Centre, School of Mechanical, Aerospace and Civil Engineering, The University of Manchester, Sackville Street, Manchester M60 JQD, United Kingdom;

    Laser Processing Research Centre, School of Mechanical, Aerospace and Civil Engineering, The University of Manchester, Sackville Street, Manchester M60 JQD, United Kingdom;

    Corrosion and Protection Centre, School of Materials, The University of Manchester, Manchester M60 JQD, United Kingdom;

    Jaguar and Land Rover Limited, Advanced Manufacturing Engineering, Banbury Road, Lighthrone, Warwick CV35 ORG, United Kingdom;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    laser welding; zn-coated steel; al alloy;

    机译:激光焊接镀锌钢铝合金;

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