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Modeling of Interfacial Layer Growth Kinetics on Mn-Containing Steels during Continuous Hot-Dip Galvanizing

机译:连续热浸镀锌期间含Mn钢上含Mn钢的界面层生长动力学的建模

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A kinetic model based on an oxide film growth analogy was developed to describe the continuous galvanizing Fe-Al interfacial layer growth for 0.2 - 3.0 wt% Mn-containing steels coated in 0.20 wt% and 0.30 wt% dissolved Al baths. It indicated that interfacial layer microstructural development and the presence of unreduced surface MnO had a significant influence on the interfacial layer growth rate. However, in the cases of the higher Mn steels in the 0.20 wt% Al bath, despite the more open interfacial layer microstructure the kinetic model could not predict the interfacial layer Al uptake as the Fe-Al growth rate was Al limited due to the additional Al consumed in reducing the thicker MnO layer present on these substrates. However, for the case of 0.30 wt% Al bath, the more open interfacial layer microstructures combined with the higher dissolved Al supply, resulted in the growth kinetics for the higher Mn alloys shifting significantly to interface controlled growth from the mixed diffusion mechanism observed for all other substrates and bath Al contents.
机译:开发了一种基于氧化膜生长类比的动力学模型,描述了在0.20wt%和0.30wt%溶解的Al浴中的0.2-3.0wt%Mn的含有0.2-3.0wt%Mn的溶液的连续镀锌Fe-Al界面增长。它表明,界面层微观结构的发育和未更新的表面MnO的存在对界面层生长速率有显着影响。然而,在0.20wt%Al浴中的较高Mn钢的情况下,尽管开放的界面层微观结构越多,动力学模型不能预测界面层Al摄取,因为Fe-al生长速率是由于额外的Al消耗在减少这些基材上存在的较厚的MNO层。然而,对于0.30wt%Al浴的情况,与较高的溶解Al供应的较高的界面层微结构更加开放的界面层微结构导致较高Mn合金的生长动力学显着地转移到界面控制的混合扩散机制的界面控制的生长。其他基材和浴Al含量。

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