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Wetting of galvanized steel by Al 4043 alloys in the first cycle of CMT process

机译:在CMT工艺的第一个循环中用Al 4043合金润湿镀锌钢

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摘要

Zn coating is essential for joining Al to galvanized steel by cold metal transfer (CMT) method; however the role of Zn on the wetting mechanism is still ambiguous. We recorded the first cycle for the molten metal transferring process using a high speed video camera, and further analyzed the wetting behavior and the interfacial microstructures. The results indicated that the significant contribution of Zn coating for the wetting is the reserved metallic characteristic of the galvanized steel surface after Zn evaporation. The residual liquid Zn film after evaporation could not improve the final wettability, and also should not be a driving force for spreading but may be a factor for contact angle hysteresis. Finally, a Zn rich zone was formed by the different affinity of Al-Fe, Zn-Fe and Al-Zn in thermodynamically, i.e., high affinity of Al-Fe and relative weak affinity of Zn-Fe and Zn-Al, and then the residual liquid Zn film was driven by the moving of molten Al alloys.
机译:锌涂层对于通过冷金属转移(CMT)方法将Al连接到镀锌钢至关重要。然而,锌在润湿机理上的作用仍然不清楚。我们使用高速摄像机记录了熔融金属转移过程的第一个循环,并进一步分析了润湿行为和界面微观结构。结果表明,Zn涂层对润湿的重要贡献是Zn蒸发后镀锌钢表面保留的金属特性。蒸发后残留的液态Zn膜不能改善最终的润湿性,也不应成为扩散的驱动力,而可能是接触角滞后的一个因素。最后,通过热力学上Al-Fe,Zn-Fe和Al-Zn的不同亲和力,即Al-Fe的高亲和力和Zn-Fe和Zn-Al的相对弱亲和力,形成了富锌区。残留的液态Zn膜是由熔融铝合金的运动带动的。

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