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Numerical Modeling of High-Temperature Corrosion Processes

机译:高温腐蚀过程的数值模拟

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Numerical modeling of the diffusional transport associated with high-temperature corrosion processes is reviewed. These corrosion processes include external scale formation and internal subscale formation during oxidation, coating degradation by oxidation and substrate interdiffusion, carburization, sulfidation and nitridation. The studies that are reviewed cover such complexities as concentration-dependent diffusivities, cross-term effects in ternary alloys, and internal precipitation where several compounds of the same element may form (e.g., carbides of Cr) or several compounds exist simultaneously (e.g., carbides containing varying amounts of Ni, Cr, Fe or Mo). In addition, the studies involve a variety of boundary conditions that vary with time and temperature. Finite-difference (F-D) techniques have been applied almost exclusively to model either the solute or corrodant transport in each of these studies. Hence, the paper first reviews the use of F-D techniques to develop solutions to the diffusion equations with various boundary conditions appropriate to high-temperature corrosion processes. The bulk of the paper then reviews various F-D modeling studies of diffusional transport associated with high-temperature corrosion.
机译:审查了与高温腐蚀过程有关的扩散传输的数值模型。这些腐蚀过程包括氧化过程中的外部水垢形成和内部子水垢形成,由于氧化而发生的涂层降解以及基材相互扩散,渗碳,硫化和氮化。所审查的研究涉及诸如浓度依赖性扩散系数,三元合金中的交叉项效应以及可能形成相同元素的几种化合物(例如Cr的碳化物)或同时存在几种化合物(例如碳化物)的内部沉淀这样的复杂性。含有不同数量的Ni,Cr,Fe或Mo)。此外,研究涉及随时间和温度变化的各种边界条件。在每个研究中,有限差分(F-D)技术几乎专门用于模拟溶质或腐蚀剂的传输。因此,本文首先回顾了使用F-D技术来开发具有适合高温腐蚀过程的各种边界条件的扩散方程的解决方案。然后,本文的大部分内容回顾了与高温腐蚀相关的扩散传输的各种F-D建模研究。

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