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首页> 外文期刊>Materials & design >Comparative study on microstructure and mechanical properties of laser welded-brazed Mg/mild steel and Mg/stainless steel joints
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Comparative study on microstructure and mechanical properties of laser welded-brazed Mg/mild steel and Mg/stainless steel joints

机译:激光焊接钎焊镁/低碳钢和镁/不锈钢接头的组织和力学性能的比较研究

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摘要

A laser welding-brazing (LWB) technology using Mg based filler has been developed for joining Mg alloy to mild steel and Mg alloy to stainless steel in a lap configuration. Microstructure and mechanical properties of laser welded-brazed lap joints in both cases were comparatively studied. The results indicated that no distinct reaction layer was observed at the interface of Mg/mild steel and subsequently the interface was confirmed as mechanical bonding, whereas an ultra thin reaction layer with a continuous and uniform morphology was evidenced at the Mg/stainless steel interface, which was indicative of metallurgical bonding. The newly formed interfacial layer was indexed as FeAl phase by transmission electron microscopy (TEM) combined with energy dispersive spectroscopy (EDS). The average tensile-shear strength of Mg/mild steel joint was only 142 N/mm with typical interfacial failure, while that of Mg/stainless steel joint could reach 270 N/mm, representing 82.4% joint efficiency relative to the Mg alloy base metal. The fracture location of Mg/stainless steel joint was at Mg fusion welding side, suggesting the interface was not weak point due to the formation of ultra thin interfacial layer. The role of alloying elements in base metal and bonding mechanism of the interfacial layer were discussed, respectively.
机译:已经开发出使用基于镁的填料的激光焊接-钎焊(LWB)技术,用于以搭接方式将镁合金与低碳钢和镁合金与不锈钢结合。比较了两种情况下激光焊接钎焊搭接接头的组织和力学性能。结果表明,在Mg /低碳钢的界面上未观察到明显的反应层,随后证实该界面为机械结合,而在Mg /不锈钢界面处证实了具有连续且均匀形态的超薄反应层,这表明冶金结合。通过透射电子显微镜(TEM)结合能量色散光谱(EDS)将新形成的界面层标记为FeAl相。 Mg /低碳钢接头的平均抗剪强度仅为142 N / mm,具有典型的界面破坏,而Mg /不锈钢接头的平均抗剪强度可达到270 N / mm,相对于Mg合金母材,其接头效率为82.4% 。 Mg /不锈钢接头的断裂位置在Mg熔焊侧,表明由于形成了超薄的界面层,界面不是薄弱点。分别讨论了合金元素在贱金属中的作用和界面层的结合机理。

著录项

  • 来源
    《Materials & design》 |2013年第1期|59-65|共7页
  • 作者单位

    State Key Laboratory of Advanced Welding and Joining, School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China;

    State Key Laboratory of Advanced Welding and Joining, School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China;

    State Key Laboratory of Advanced Welding and Joining, School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China;

    State Key Laboratory of Advanced Welding and Joining, School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China;

    State Key Laboratory of Advanced Welding and Joining, School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, China;

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

    C. Lasers; D. Welding; F. Microstructure;

    机译:C.激光;D.焊接;F.微观结构;

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