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Laser welding of zinc coated steel: an alternative to resistance spot welding

机译:镀锌钢的激光焊接:电阻点焊的替代方法

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摘要

Laser lap welding of zinc coated steel using copper is found to be a promising alternative to resistance spot welding. Copper, which acts as an alloying element for zinc, is sandwiched between the lapped sheets in powder form. Such introduction of copper not only ensures a zero gap, but also assists in reducing violent vaporisation of zinc, the main cause of porosity and spattering during laser welding of zinc coated steel. Emission spectroscopy data recorded during the welding experiments validate the effect of copper on zinc vaporisation. Mechanical tests show acceptable results for laser welds made with copper. Moreover, minimal residual copper in the weld zone, and its extended solid solubility in iron due to non-equilibrium processing rules out the possibility of hot cracking. Concerns regarding electrochemical corrosion due to addition of copper in the weld are addressed and the results are found to be favourable. It is further shown that the fatigue life of a laser weld is ∼25% higher than a standardised spot weld for the same strain energy release rate. Finally, an equivalent laser weld specification is given for the zinc coated steel used in this study.
机译:发现使用铜对锌涂层钢进行激光搭接焊接是电阻点焊的有前途的替代方法。用作锌合金元素的铜以粉末形式夹在研磨的板之间。铜的这种引入不仅确保了零间隙,而且还有助于减少锌的剧烈蒸发,锌是镀锌钢在激光焊接过程中产生气孔和飞溅的主要原因。焊接实验期间记录的发射光谱数据验证了铜对锌蒸发的影响。机械测试表明,用铜制成的激光焊接结果可接受。此外,焊接区域中残留的铜极少,并且由于非平衡处理而延长了其在铁中的固溶度,排除了产生热裂纹的可能性。解决了由于在焊缝中添加铜而引起的电化学腐蚀的问题,结果是令人满意的。进一步表明,在相同的应变能释放速率下,激光焊接的疲劳寿命比标准点焊要高约25%。最后,给出了本研究中使用的镀锌钢的等效激光焊接规范。

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