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Modeling of Ni Diffusion Induced Austenite Formation in Ferritic Stainless Steel Interconnects

机译:铁素体不锈钢互连中Ni扩散诱导奥氏体形成的模拟

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摘要

Ferritic stainless steel interconnect plates are widely used in planar solid oxide fuel cell and electrolysis cell stacks. During stack production and operation, nickel from the Ni/yttria stabilized zirconia fuel electrode or from the Ni contact component layer diffuses into the interconnect plate, causing transformation of the ferritic phase into an austenitic phase in the interface region. This is accompanied with changes in volume, and in mechanical and corrosion properties of the interconnect plates. In this work, kinetic modeling of the inter-diffusion between Ni and FeCr based ferritic stainless steel was conducted, using the CALPHAD (CALculation of PHAse Diagrams) approach with the DICTRA (DIffusion Controlled TRAnsformation) software. The kinetics of inter-diffusion and austenite formation was explored in detail. The simulation was further validated by comparing with experiments. The results show that after 2000 h at 800°C Ni diffuses more than 100 μm deep into Crofer 22 APU. Along with the Ni diffusion, part of the ferritic steel with 50–60 μm in thickness has transformed into the austenitic phase. Growth of the austenite phase in commercial interconnect materials was predicted to take place under practical stack operation conditions.
机译:铁素体不锈钢互连板广泛用于平面固体氧化物燃料电池和电解电池堆。在电池堆生产和操作期间,来自Ni /氧化钇稳定的氧化锆燃料电极或来自Ni接触成分层的镍扩散到互连板中,从而在界面区域中将铁素体相转变为奥氏体相。这伴随着互连板的体积以及机械和腐蚀性能的变化。在这项工作中,使用CALPHAD(PHHAse图的计算)方法和DICTRA(扩散控制的TRAnsformation)软件,对Ni和FeCr基铁素体不锈钢之间的相互扩散进行了动力学建模。详细探讨了相互扩散和奥氏体形成的动力学。通过与实验比较进一步验证了仿真。结果表明,在800°C下2000 h之后,Ni扩散到Crofer 22 APU中的深度超过100μm。随着镍的扩散,部分铁素体钢的厚度为50–60μm已转变为奥氏体相。预计在商业互连材料中奥氏体相的生长将在实际的堆叠操作条件下发生。

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