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Intergranular corrosion on Nd:YAG laser-welded A653 steel for automotive application

机译:汽车用Nd:YAG激光焊接A653钢的晶间腐蚀

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摘要

Laser welding techniques produce a narrower heat-affected zone than other conventional welding methods. However, laser welding is not exempt from high heat input during the welding process. This high heat input results in changes of the material properties including its corrosion behaviour; the formation of the heat affected zone increases the susceptibility of the material to intergranular attack. The residue of zinc at the weld due to condensation and splashing during the welding process may also influence adversely the corrosion behaviour of the material. The degree of susceptibility to corrosion strongly depends on the welding parameters. Electrochemical and microstructure characterisation were employed to study the influence of Nd:YAG (neodymium yttrium aluminium garnet) laser-welding on an A653 galvanized steel at different welding parameters.
机译:与其他常规焊接方法相比,激光焊接技术产生的热影响区更窄。但是,激光焊接在焊接过程中不能免除高热量输入。高热量输入会导致材料性能发生变化,包括腐蚀行为。热影响区的形成增加了材料对晶间腐蚀的敏感性。焊接过程中由于冷凝和飞溅而在焊缝处残留的锌也会对材料的腐蚀行为产生不利影响。腐蚀的敏感性在很大程度上取决于焊接参数。利用电化学和微观结构表征研究了Nd:YAG(钕钇铝石榴石)激光焊接对A653镀锌钢在不同焊接参数下的影响。

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