Modeling of Surface Modification of Stainless Steel by Halide Activated Pack Cementation Method

F. Kahriman
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Abstract

In high-temperature applications, ferrous-based materials are important due to their excellent combination of desirable mechanical properties, ease of production, corrosion resistance at room temperature and cost-effectiveness. However, mechanical properties must be optimized against environmental effects. Depending on the industrial applications, various corrosion types may also occur. An approach to preserve the mechanical properties of the structural alloy being protected against corrosion is the application of protective coatings to the surfaces. Diffusion coatings are an effective method to obtain corrosion, oxidation and abrasion resistance against detrimental conditions of high temperature. According to the literature, the halide activated pack cementation method has been widely used for ferrous-based materials for a long time. However, most studies concerned with developing coating applications are based on experimental investigations that include microscopic, chemical, and mechanical analyses. Limited studies have been conducted based on computational alloy approaches. In this study, Cr coating of the AISI 316L steel by halide activated pack cementation method was considered as a diffusional problem and the kinetics of the coating deposition process were examined. The effect of process variables such as temperature, time and the compositions of coating layers formed on the surfaces were investigated thermodynamically with Thermo-Calc software and kinetically with DICTRA module. This approach provides insight into the dependence of solid-state diffusions on the processing parameters, and a better understanding of the phases that form along the coating and substrate material.
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卤化物活化填料胶结法对不锈钢表面改性的建模
在高温应用中,基于铁的材料是重要的,因为它们具有理想的机械性能,易于生产,在室温下耐腐蚀和成本效益的优异组合。然而,机械性能必须针对环境影响进行优化。根据工业应用的不同,还可能发生各种腐蚀类型。保护结构合金的机械性能的一种方法是在表面涂上保护涂层。扩散涂层是在高温条件下获得耐腐蚀、抗氧化和抗磨损的有效方法。据文献报道,卤化物活化充填胶结法长期以来被广泛应用于含铁基材料。然而,大多数与开发涂层应用有关的研究都是基于实验研究,包括微观、化学和力学分析。基于计算合金方法进行了有限的研究。本研究将aisi316l钢卤化物活化包埋法的Cr涂层视为扩散问题,并对涂层沉积过程进行动力学研究。利用hot - calc软件和DICTRA模块分别研究了温度、时间和涂层成分等工艺变量对表面形成的影响。这种方法可以深入了解固态扩散对工艺参数的依赖,并更好地了解沿涂层和衬底材料形成的相。
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