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首页> 外文期刊>Journal of Materials Science >The Fe–Zn–Al–Cr system and its impact on the galvanizing process in chromium-added zinc baths
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The Fe–Zn–Al–Cr system and its impact on the galvanizing process in chromium-added zinc baths

机译:Fe-Zn-Al-Cr系统及其对添加铬的锌浴中镀锌过程的影响

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摘要

The zinc rich corner of the Fe–Zn–Al–Cr at 460 °C is of interest for galvanizing because Al is a usual addition element in zinc bath, whereas Cr is naturally present because it is supplied by the stainless steel roller dipping in the Zn bath during the process. Indeed, it is used to understand the formation and growth mechanisms of the solid phases during galvanizing in Al and Cr-added Zn bath. By using additional experimental results in the Al–Cr–Zn and Fe–Zn–Al–Cr systems, the zinc rich corner of the Fe–Zn–Al–Cr system at 460 °C was determined with more accuracy. Thus, new equilibria between the liquid and quaternary phases have been pointed out, namely Al2Cr3 stabilized by Zn and enriched with Fe and τ1, the latter being isotypic with δ-FeZn9. This quaternary system was assessed with the CALPHAD method using the PARROT module of the Thermo-Calc Software. The liquid and solid solutions are described by the Redlich-Kister-Muggianu equations. All the modeled phases are considered as stoichiometric in the binary systems.
机译:Fe-Zn-Al-Cr在460°C时富含锌的角对于镀锌很重要,因为Al是锌浴中的常见添加元素,而Cr是天然存在的,因为它是由浸入不锈钢辊中的不锈钢辊提供的。锌浴过程中。实际上,它用于了解在添加铝和铬的锌浴中镀锌过程中固相的形成和生长机理。通过在Al–Cr–Zn和Fe–Zn–Al–Cr系统中使用其他实验结果,可以更精确地确定460°C时Fe–Zn–Al–Cr系统的富锌角。因此,指出了液相和四元相之间的新平衡点,即Zn稳定并富集了Fe和τ 1 2 Cr 3 >,后者与δ-FeZn 9 同型。使用Thermo-Calc软件的PARROT模块,使用CALPHAD方法评估该四元系统。液体和固体溶液由Redlich-Kister-Muggianu方程描述。在二元系统中,所有建模阶段都被视为化学计量的。

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