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A novel iron enrichment isothermal kinetic model proposal for galvanneal coatings

机译:镀锌层的新型铁富集等温动力学模型建议。

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Galvanneal (GA) coatings are extensively used in the automotive industry in car bodies and for exposed parts to enhance corrosion protection. GA coatings are produced in Continuous Galvanizing Lines (CGL) by carrying out a heat treatment immediately after the Zn deposition in the liquid state, where the liquid is constitutionally solidified and transformed into Fe–Zn alloy (composed by its intermetallic compounds (IMCs)). IMCs nucleation and growth kinetics control allows one optimize the coating mechanical performance during steel drawing operations. This work proposes a new kinetic model to describe the GA coating Fe enrichment. Based on the hypothesis that each IMC will be nucleated, Fe enriched, saturated and consumed by an Fe richer IMC, the model was able to describe the Gleeble simulated isothermal Fe enrichment kinetics for unalloyed industrially produced interstitial free (IF) and dual-phase (DP) GA coating steels.
机译:Galvanneal(GA)涂层广泛用于汽车行业的车身和裸露部件,以增强防腐蚀性能。在连续镀锌生产线(CGL)中,通过在液态锌沉积后立即进行热处理来生产GA涂层,在这种状态下,液体被结构化固化并转变为Fe-Zn合金(由其金属间化合物(IMC)组成) 。通过IMC的成核和生长动力学控制,可以在拉丝过程中优化涂层的机械性能。这项工作提出了一个新的动力学模型来描述GA涂层中铁的富集。基于这样的假设,即每个IMC都会被富Fe的IMC形核,富集,饱和和消耗,该模型能够描述Gleeble模拟的等温Fe富集动力学,用于非合金化工业生产的间隙自由(IF)和双相( DP)GA涂层钢。

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