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Corrosion Behavior of Keyhole-Free Friction Stir Spot Welded Joints of Dissimilar 6082 Aluminum Alloy and DP600 Galvanized Steel in 3.5% NaCl Solution

机译:异种6082铝合金与DP600镀锌钢的无锁孔摩擦搅拌点焊接头在3.5%NaCl溶液中的腐蚀行为

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The corrosion behavior of keyhole-free friction stir spot welded joints of dissimilar 6082 aluminum alloy and DP600 galvanized steel in 3.5% NaCl solution has been investigated by the immersion test and electrochemical analysis. The surface of the aluminum alloy produced exfoliation and pitting corrosion. The pitting occurred seriously on the interface of the 6082 aluminum alloy, but the steel had no corrosion. The corrosion galvanic couples were formed between elements of Si and Fe with a high electrode potential, and Mg and Al with a low electrode potential, around them. Mg and Al elements of Mg 2 Si and Si-containing solid-solution phase α (Al) preferentially became an anodic dissolution and formed exfoliation corrosion around the Si elements. Fe-rich phase θ (Al 3 Fe) as the cathode caused corrosion of Mg and formed pitting around Mg-rich phase β (Al 3 Mg 2 ) as the anode. The sequence of the corrosion resistance of different areas of the joints (with decreasing corrosion resistance) was WNZ (Weld Nugget Zone) > TMAZ (Thermo-mechanically Affected Zone) > BM (Base Metal) > HAZ (Heat-affected Zone). The joints of keyhole-free FSSW (Fiction Stir Spot Welding) of dissimilar 6082 aluminum alloy and DP600 galvanized steel have better corrosion resistance than base metal in 3.5% NaCl solution.
机译:通过浸没试验和电化学分析,研究了异种6082铝合金和DP600镀锌钢无键孔摩擦搅拌点焊在3.5%NaCl溶液中的腐蚀行为。铝合金表面产生剥落和点蚀。在6082铝合金的界面上严重发生点蚀,但钢没有腐蚀。在电极电位高的Si和Fe元素与电极电位低的Mg和Al元素之间形成腐蚀电偶。 Mg 2 Si和含Si固溶相α(Al)中的Mg和Al元素优先成为阳极溶解并在Si元素周围形成剥落腐蚀。富铁相θ(Al 3 Fe)作为阴极引起Mg腐蚀,并在富镁相β(Al 3 Mg 2)作为阳极周围形成点蚀。接头不同区域的耐腐蚀性(随着耐腐蚀性的降低)的顺序为:WNZ(焊接熔核区)> TMAZ(热机械影响区)> BM(贱金属)> HAZ(热影响区)。在3.5%NaCl溶液中,异种6082铝合金和DP600镀锌钢的无锁孔FSSW(小说搅拌点焊)接头的耐腐蚀性优于母材。

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