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Grain boundary oxidation in iron-based alloys, investigated by O-18 enriched water vapour - The effect of mixed oxides in binary and ternary Fe-{Al, Cr, Mn, Si} systems

机译:O-18富集水蒸气研究铁基合金中的晶界氧化-二元和三元Fe- {Al,Cr,Mn,Si}系统中混合氧化物的作用

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Selective oxidation experiments at 700 degrees C in binary and ternary iron-based model alloys containing Al, Cr, Mn, and Si were carried out. The internal oxidation behaviour along grain boundaries and inside ferrite grains was analyzed by LOM, SEM and ToF-SIMS. Oxygen isotope exchange revealed the location of fast diffusion pathways in the alloy. Numerical calculations of oxide distributions were compared to experimental findings, revealing that oxygen transport within ferrite grains is significantly lower than reported from literature. Discrepancies between simulations and experiments were discussed. The presented hypothesis of oxygen trapping represents an important viewpoint to explain internal oxidation in metallic alloys. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在含Al,Cr,Mn和Si的二元和三元铁基模型合金中,于700摄氏度进行了选择性氧化实验。通过LOM,SEM和ToF-SIMS分析了沿晶界和内部铁素体晶粒的内部氧化行为。氧同位素交换揭示了合金中快速扩散途径的位置。将氧化物分布的数值计算与实验结果进行了比较,结果表明,铁素体晶粒内的氧迁移明显低于文献报道。讨论了模拟和实验之间的差异。提出的氧俘获假设代表了解释金属合金内部氧化的重要观点。 (C)2015 Elsevier Ltd.保留所有权利。

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