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Influence of Aluminum on the Formation Behavior of Zn-Al-Fe Intermetallic Particles in a Zinc Bath

机译:铝对锌浴中Zn-Al-Fe金属间化合物形成行为的影响

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The shape, size, and composition of dross particles as a function of aluminum content at a fixed temperature were investigated for aluminum added to the premelted Zn-Fe melt simulating the hot-dip galvanizing bath by a sampling methodology. In the early stage, less than 30 minutes after Al addition, local supersaturation and depletion of the aluminum concentration occurred simultaneously in the bath, resulting in the nucleation and growth of both Fe2Al5Zn x and FeZn13. However, the aluminum was homogenized continuously as the reaction proceeded, and fine and stable FeZn10Al x formed after 30 minutes. An Al-depleted zone (ADZ) mechanism was newly proposed for the “η→η+ζ→δ” phase transformations. The ζ phase bottom dross partly survived for a relatively long period, i.e., 2 hours in this work, whereas the η phase disappeared after 30 minutes. In the early stage of dross formation, both Al-free large particles as well as high-Al tiny particles were formed. The dross particle size decreased slightly with increased reaction time before reaching a plateau. The opposite tendency was observed when the Al content was 0.130 mass pct; with a relatively high Al content, the nucleation of tiny η phase dross was significantly enhanced because of the high degree of supersaturation. This unstable η phase dissolved continuously and underwent simple transformation to the stable δ phase. The relationship between nucleation potential and supersaturation ratio of species is discussed based on the thermodynamics of classical nucleation theory.
机译:通过采样方法模拟了模拟热浸镀锌浴中添加到预熔融Zn-Fe熔体中的铝,研究了固定温度下渣as颗粒的形状,尺寸和组成与铝含量的关系。在早期阶段,添加铝后不到30分钟,镀液中同时发生局部过饱和和铝浓度耗尽,从而导致Fe 2 Al 5 < / sub> Zn x 和FeZn 13 。然而,随着反应的进行,铝被连续均质化,并且在30分钟后形成了细而稳定的FeZn 10 Al x 。针对“η→η+ζ→δ”相变,新提出了贫铝区(ADZ)机制。 ζ相的底部熔渣部分保留了较长的时间,即在该工作中2小时,而η相在30分钟后消失了。在浮渣形成的早期,既形成了无铝的大颗粒,也形成了高铝的小颗粒。渣a粒度随着达到稳定期之前反应时间的增加而略有降低。当Al含量为0.130质量%时,观察到相反的趋势。 Al含量相对较高时,由于过饱和度高,因此细小的η相浮渣的成核作用得到了显着增强。该不稳定的η相连续溶解并简单地转变为稳定的δ相。基于经典成核理论的热力学,讨论了成核电位与物种过饱和率之间的关系。

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