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An Investigation of the Microstructure of an Intermetallic Layer in Welding Aluminum Alloys to Steel by MIG Process

机译:MIG法焊接铝合金与钢的金属间层的显微组织研究

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摘要

Butt joints of A5052 aluminum alloy and SS400 steel, with a new type of chamfered edge, are welded by means of metal inert gas welding and ER4043 Al-Si filler metal. The microhardness and microstructure of the joint are investigated. An intermetallic layer is found on the surface of the welding seam and SS400 steel sheet. The hardness of the intermetallic layer is examined using the Vickers hardness test. The average hardness values at the Intermetallic (IMC) layer zone and without the IMC layer zone were higher than that of the welding wire ER4043. The tensile strength test showed a fracture at the intermetallic layer when the tensile strength is 225.9 MPa. The tensile value test indicated the average of welds was equivalent to the 85% tensile strength of the A5052 aluminum alloy. The thickness of the intermetallic layers is non-uniform at different positions with the ranges from 1.95 to 5 μm. The quality of the butt joint is better if the intermetallic layer is minimized. The Si crystals which appeared at the welding seam, indicating that this element participated actively during the welding process, also contributed to the IMC layer’s formation.
机译:A5052铝合金和SS400钢的对接接头具有新型的倒角边缘,通过金属惰性气体保护焊和ER4043 Al-Si填充金属进行焊接。研究了接头的显微硬度和显微组织。在焊缝和SS400钢板的表面上发现金属间层。使用维氏硬度测试检查金属间层的硬度。金属间(IMC)层区域和不具有IMC层区域的平均硬度值均高于焊丝ER4043的平均硬度值。拉伸强度试验表明,当拉伸强度为225.9MPa时,金属间层断裂。拉伸值测试表明,焊缝的平均值等于A5052铝合金的85%拉伸强度。金属间层的厚度在1.95至5μm的范围内的不同位置处是不均匀的。如果金属互化物层最小化,对接接头的质量会更好。出现在焊缝上的Si晶体表明该元素在焊接过程中积极参与,也有助于IMC层的形成。

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