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Wetting and reactive wetting during hot-dip galvanizing of high Mn alloyed steel with Zn-Al-Mg baths

机译:高锰合金钢与锌铝镁浴的热浸镀锌过程中的润湿和反应润湿

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This present study discusses hot-dip galvanizing of a Fe-23%Mn-0.6%C-0.3%Si steel and concentrates on the impact of a Mg addition to the galvanizing bath on wetting and reactive wetting. Steel samples were conventionally annealed (800°C/60s in 5%H _2-N _2) and hot-dipped in ternary Zn-Al-Mg baths with 0.17-1.2wt.% of Al and 0.8-1.0wt.% of Mg for measuring wetting forces and contact angles. To characterize the impact of Mg on interface formation in more detail other samples were bright annealing (1100°C/60s in 5%H _2-N _2) or subjected to a oxidation/reduction treatment - so-called pre-oxidation - (600°C/10s in 1.8%O _2-N _2+800°C/60s in 5%H _2-N _2) prior to hot-dipping into a Zn-1.5%Al-5.0%Mg bath. The key findings are: adding Mg to the galvanizing bath will improve wetting and reactive wetting of high Mn alloyed steel if the amount of dissolved bath-Al is appropriately set. Furthermore, high-oxygen affine Mg is obviously able to support the dissolution of external oxides on the steel surface during hot-dipping. Morphology of Fe _2Al _5Zn _x interfacial crystals will change from globular to plate-shaped if Mg is alloyed to the galvanizing bath. Based on these observations, decreased surface tension of the galvanizing bath and intensified MnO reduction were proposed leading to this improved galvanizability of high Mn alloyed steel when hot-dipping in Zn-Al-Mg ternary baths.
机译:本研究讨论了Fe-23%Mn-0.6%C-0.3%Si钢的热浸镀锌,并集中讨论了在镀锌浴中添加Mg对润湿和反应性润湿的影响。通常将钢样品退火(在5%H _2-N _2中于800°C / 60s退火),然后将其热浸在含0.17-1.2wt。%的Al和0.8-1.0wt。%的Mg的三元Zn-Al-Mg浴中用于测量润湿力和接触角。为了更详细地描述镁对界面形成的影响,其他样品进行了光亮退火(在5%H _2-N _2中为1100°C / 60s)或进行了氧化/还原处理-所谓的预氧化-(600在热浸入Zn-1.5%Al-5.0%Mg镀液之前,在1.8%O _2-N _2中的°C / 10s +在5%H _2-N _2中的800°C / 60s)。关键发现是:如果适当设定熔池铝的溶解量,则在镀锌槽中添加Mg将改善高锰合金钢的润湿性和反应性润湿性。此外,高氧仿射Mg显然能够在热浸过程中支持外部氧化物在钢表面的溶解。如果将Mg合金化到镀锌浴中,Fe _2Al _5Zn _x界面晶体的形态将从球状变为板状。基于这些观察结果,提出了降低镀锌浴的表面张力和加强MnO还原的方法,从而提高了在Zn-Al-Mg三元浴中热浸镀时高Mn合金钢的镀锌性能。

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