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首页> 外文期刊>Materials & design >Metallurgical and mechanical examinations of steel-copper joints arc welded using bronze and nickel-base superalloy filler materials
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Metallurgical and mechanical examinations of steel-copper joints arc welded using bronze and nickel-base superalloy filler materials

机译:使用铜和镍基高温合金填充材料电弧焊接钢-铜接头的冶金和机械检验

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摘要

The paper presents metallurgical and mechanical examinations of joints between dissimilar metals viz. copper (UNSC11000) and alloy steel (En31) obtained by Shielded Metal Arc Welding (SMAW) using two different filler materials, bronze and nickel-base super alloy. The weld bead of the joint with bronze-filler displayed porosity, while that with nickel-filler did not. In tension tests, the weldments with bronze-filler fractured in the centre of the weld, while those with nickel-filler fractured in the heat affected zone (HAZ) of copper. Since the latter exhibited higher strength than the former, all the major tests were undertaken over the joints with nickel-filler alone. Scanning Electron Microscopy (SEM) coupled with Energy Dispersive Spectroscopy (EDS) indicated corrugated weld interfaces and favorable elemental diffusions across them. X-ray diffraction (XRD) studies around the weld interfaces did not reveal any detrimental intermetallic compounds. Transverse bending tests showed that flexural strengths of the weldments were higher than the tensile strengths. Transverse side bend tests confirmed good ductility of the joints. Shear strength of the weld-interface (Cu-Ni or Ni-steel) was higher than the yield strength of weaker metal. Microhardness and Charpy impact values were measured at all the important zones across the weldment.
机译:本文介绍了异种金属之间接头的冶金和机械检查,即。铜(UNSC11000)和合金钢(En31)是使用两种不同的填充材料(青铜和镍基超级合金)通过屏蔽金属电弧焊(SMAW)获得的。使用青铜填料的接头的焊缝显示出气孔,而使用镍填料的焊缝则没有。在拉伸测试中,带有青铜填充物的焊件在焊缝中心断裂,而带有镍填充物的焊件在铜的热影响区(HAZ)断裂。由于后者显示出比前者更高的强度,因此所有主要测试都是在仅使用镍填充剂的接头上进行的。扫描电子显微镜(SEM)与能量色散谱(EDS)结合显示出波纹状的焊缝界面以及元素在它们之间的良好扩散。焊缝周围的X射线衍射(XRD)研究未发现任何有害的金属间化合物。横向弯曲试验表明,焊件的抗弯强度高于抗拉强度。横向弯曲试验证实了接头的良好延展性。焊接界面(Cu-Ni或Ni-钢)的剪切强度高于弱金属的屈服强度。在焊件的所有重要区域测量了显微硬度和夏比冲击值。

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  • 来源
    《Materials & design》 |2013年第5期|793-809|共17页
  • 作者

    M.Velu; Sunil Bhat;

  • 作者单位

    School of Mechanical and Building Sciences, Vellore Institute of Technology University, Vellore 632 014, Tamil Nadu, India;

    School of Mechanical and Building Sciences, Vellore Institute of Technology University, Vellore 632 014, Tamil Nadu, India;

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