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The Zn-rich Corner of the Zn-Al-Fe Phase Diagram for Use in Continuous Galvanizing

机译:Zn-Al-Fe相图的富锌角用于连续镀锌

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As thinner, higher strength sheet steels are increasingly used in automotive designs for improved fuel efficiency, corrosion protection by metallic coating is required in order to maintain the vehicle's appearance and structural integrity. In order to realise these goals, in has become imperative that good control of the continuous galvanizing process be maintained. A key ingredient for this is control of the galvanizing bath dissolved or effective Al, which is dictated by the Zn-rich corner of the Zn-Al-Fe phase diagram. This paper will present a combination of experimental data and a comprehensively revised thermodynamic model to describe the system. In particular, the model recognises the non-stoichiometry of the delta and eta intermetallic phases and incorporates revised values for the thermodynamic properties of Fe and Al dissolved in molten Zn.
机译:作为更薄的,更高的强度片钢越来越多地用于汽车设计,以提高燃油效率,需要金属涂层的腐蚀保护,以保持车辆的外观和结构完整性。为了实现这些目标,在保持连续镀锌过程的良好控制的必要性。用于这种关键的成分是控制溶解或有效Al的镀锌浴,其由Zn-Al-Fe相图的富锌角决定。本文将呈现实验数据和全面修正的热力学模型的组合来描述系统。特别地,该模型识别Delta和ETA金属间相的非化学计量,并掺入了溶解在熔融Zn中的Fe和Al的热力学性质的修改值。

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