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Stress-induced roughness development during oxide scale growth on a metallic alloy for SOFC interconnects

机译:用于SOFC互连的金属合金上氧化皮生长期间应力引起的粗糙度发展

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The metallic alloys employed in solid oxide fuel cell (SOFC) interconnects rely on the growth of a protective oxide scale to sustain the aggressive functioning environment at high temperature. The morphology of the oxide/metal interface is critical to the mechanical resistance of the material system upon cooling and therefore to the component lifetime. This work investigates the development of a roughness at the oxide/metal interface, under the influence of a nonuniform stress field along the phase boundary. A small initial roughness is assumed along with a mechanism of growth stress generation with time, and a previously derived formulation accounts for the influence of the stress and strain situation at the sharp metal/oxide phase boundary on the local oxidation kinetics. A continuum mechanics/diffusion framework is formed to complete the model, and a specifically developed simulation tool is used, based on a finite element method coupled with an external routine for the phase boundary propagation. The non-uniform growth of a chromia scale over a ferritic stainless steel used in aSOFCinterconnect is simulated, and coupled stress and roughness developments are investigated. The consequences regarding mechanical failure and the influence of the main parameters are discussed.
机译:固体氧化物燃料电池(SOFC)互连中使用的金属合金依靠保护性氧化皮的生长来维持高温下的侵蚀性功能环境。氧化物/金属界面的形态对材料系统在冷却时的机械抵抗力至关重要,因此对部件的使用寿命也至关重要。这项工作研究了在沿相边界的非均匀应力场的影响下,氧化物/金属界面处粗糙度的发展。假定初始粗糙度较小,并且随着时间的推移会产生增长应力,并且先前得出的公式说明了在急剧的金属/氧化物相边界处的应力和应变情况对局部氧化动力学的影响。形成了一个连续的力学/扩散框架来完成该模型,并使用了一个有限元方法,并结合了用于边界边界传播的外部例程,专门开发了一种仿真工具。模拟了在SOFC互连中使用的铁素体不锈钢上氧化铬垢的不均匀生长,并研究了应力和粗糙度的耦合发展。讨论了有关机械故障的后果以及主要参数的影响。

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