首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of filler wire and wire feed speed on metallurgical and mechanical properties of MIG welding-brazing of automotive galvanized steel/5754 aluminum alloy in a lap joint configuration
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Influence of filler wire and wire feed speed on metallurgical and mechanical properties of MIG welding-brazing of automotive galvanized steel/5754 aluminum alloy in a lap joint configuration

机译:焊丝和送丝速度对搭接形式的汽车镀锌钢/ 5754铝合金的MIG钎焊冶金和力学性能的影响

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摘要

In this research, the galvanized steel with thickness of 2 mm was joined to the 5754 aluminum alloy with thickness of 3 mm by the cold metal transfer MIG welding-brazing process. The effect of the filler wires (AlSi3Mn, AlSi5, and AlSi12) and wire feed speeds (4.7, 5, and 5.3 m/min) on metallurgical and mechanical properties have been discussed. According to the experimental results, thickness of intermetallic compound (IMC) layer which was formed along the interface during the MIG welding-brazing was varied by changing of parameters. In addition, the results indicated that by increasing of the wire feed speed, the thickness of IMC layer at first decreased and then increased. Results indicated that the maximum thickness variation of IMC layer belonged to the AlSi12 filler wire and the best consistent tensile strength was produced with AlSi3Mn filler wire with an average value of 188 N/mm(2). Observation of the failed specimens indicated two types of failure modes under the tensile load, including the fractures occurred in HAZ of aluminum and the fractures occurred near IMC layer.
机译:在这项研究中,通过冷金属转移MIG焊接-钎焊工艺将厚度为2毫米的镀锌钢与厚度为3毫米的5754铝合金连接起来。讨论了填充焊丝(AlSi3Mn,AlSi5和AlSi12)和焊丝进给速度(4.7、5和5.3 m / min)对冶金和机械性能的影响。根据实验结果,通过改变参数来改变在MIG焊接钎焊期间沿界面形成的金属间化合物(IMC)层的厚度。另外,结果表明,通过增加焊丝进给速度,IMC层的厚度首先减小然后增加。结果表明,IMC层的最大厚度变化属于AlSi12填充焊丝,并且以平均值188 N / mm(2)的AlSi3Mn填充焊丝产生了最佳的一致拉伸强度。观察破坏的样品表明在拉伸载荷下有两种类型的破坏模式,包括在铝的热影响区中发生的断裂和在IMC层附近发生的断裂。

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