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Improvement of the Oxidation Behavior of Ferritic-Martensitic Steels in Water Vapor Containing Environments

机译:改善水蒸气环境中铁素体-马氏体钢的氧化行为

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Modern heat resistant ferritic-martensitic steels are of great interest as superheater materials in fossil fuel power plants or as material for interconnectors in solid oxide fuel cells. The environments of such applications contain high amounts of water vapor, which is known to promote the formation of the volatile chromium species CrO_2(OH)_2 leading to insufficient oxidation resistance of 9% Cr-steels in such atmospheres. Results pertaining to the enrichment of manganese and chromium in metal subsurface regions without altering the bulk phase are presented. The formation of protective scales during oxidation to suppress the evaporation of chromium oxy hydroxide in water vapor containing environments was achieved. Reference oxide samples were prepared to investigate the kinetics of oxidation of chromia, manganese oxide and MnCr_2O_4-phase without an influence of the substrate material. The diffusion treatment developed was based on thermodynamic considerations for the design of the pack cementation process to reach different compositions in the enriched diffusion zone. The improved oxidation behavior was illustrated by oxidation experiments in an environment with water vapor (1% O_2 -10% H_2O - N_2) at temperature of 650°C.
机译:现代耐热铁素体-马氏体钢作为化石燃料发电厂中的过热器材料或固体氧化物燃料电池中的互连器材料备受关注。这种应用的环境包含大量的水蒸气,已知水蒸气会促进挥发性铬物质CrO_2(OH)_2的形成,从而导致在此类气氛中9%Cr钢的抗氧化性不足。提出了有关在金属次表面区域富集锰和铬而不改变本体相的结果。实现了在氧化过程中形成保护性水垢,以抑制含水氢氧化物环境中氢氧化氢氧化铬的蒸发。制备参比氧化物样品,以研究氧化铬,氧化锰和MnCr_2O_4相的氧化动力学,而不受基材的影响。所开发的扩散处理是基于热力学考量来设计填充胶结工艺的,以在富集扩散区达到不同的组成。通过在温度为650°C的水蒸气(1%O_2 -10%H_2O-N_2)的环境中进行氧化实验,可以说明改善的氧化行为。

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