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A novel approach to determine high temperature wettability and interfacial reactions in liquid metal/solid interface

机译:确定液态金属/固体界面中高温润湿性和界面反应的新方法

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In many technical processes, high temperature wetting of a liquid metal phase on a solid substrate occurs via an extensive chemical reaction and the formation of a new solid compound at the interface. For instance, good adhesion of the zinc coating to the steel surface is one of the most important requirements that the hot-dip galvanizing process has to fulfill. Good adhesion directly depends on the formation of a defect-free Fe2Al5 inhibition layer at the interface. The complex surface chemistry of oxides on the steel surface which is a result of segregation and selective oxidation upon recrystallization annealing significantly influences the kinetics of the correlated reactive wetting. This article presents the development of a novel advanced technique for the investigation of high temperature wetting process up to a temperature of 1100 K and provides first new insights in the mechanisms of the reactive wetting process in presence of oxides on the surface. The method is based on the sessile drop method with an additional spinning technique to get rid off the liquid metal phase at any chosen wetting time, thusly opening the way to access the interfacial reaction layer directly. The presented work focuses on model alloys of interest which are mainly relevant to the industrial steel grades. Emphasis is put both on the wettability of liquid Zn and on the interfacial reactions during reactive wetting process. Insights into such reactive phenomena are fundamental demand to improve the hot-dip galvanizability of advanced high strength steel grades.
机译:在许多技术过程中,液态金属相在固态基材上的高温润湿是通过广泛的化学反应和在界面处形成新的固态化合物而发生的。例如,锌涂层对钢表面的良好附着力是热浸镀锌工艺必须满足的最重要要求之一。良好的附着力直接取决于在界面处形成无缺陷的Fe 2 Al 5 抑制层。钢表面上氧化物的复杂表面化学性质是重结晶退火时的偏析和选择性氧化的结果,极大地影响了相关反应性润湿的动力学。本文介绍了研究温度高达1100 K的高温润湿过程的新型先进技术的发展,并为表面存在氧化物的反应性润湿过程的机理提供了新的见解。该方法基于无滴法和附加的纺丝技术,可在任何选定的润湿时间去除液态金属相,从而为直接进入界面反应层开辟了道路。目前的工作集中在主要与工业钢种有关的感兴趣的模型合金上。重点放在液态锌的润湿性和反应性润湿过程中的界面反应上。洞悉此类反应现象是提高高级高强度钢种热浸镀锌性能的基本要求。

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