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High temperature corrosion of cast heat resisting steels in CO + CO2 gas mixtures

机译:铸造耐热钢在CO + CO2气体混合物中的高温腐蚀

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摘要

Two commercial variants of the cast heat resistant grade HP40Nb (Fe–25Cr–35Ni, Nb modified) were exposed to CO/CO2 gases at 982 and 1080 C in order to simulate exposure to the carbon and oxygen potentials realised in steam reformers under normal and overheated conditions. Both alloys developed external chromium-rich oxide scales, intradendritic silica precipitates and interdendritic oxide protrusions where primary, interdendritic carbides were oxidised in situ. Surprisingly, the lower silicon contentudalloy developed a more continuous internal silica layer, thereby slowing external scaling. Intradendriticudoxidation was fast in both alloys, and is attributed to interfacial oxygen diffusion. Both alloys underwentudrapid internal carburisation, indicating that their oxide scales failed to prevent carbon access to theudunderlying alloys under these reaction conditions.
机译:铸造耐热等级HP40Nb的两种商业变体(Fe–25Cr–35Ni,Nb改性)在982和1080 C下暴露于CO / CO2气体中,以模拟暴露于蒸汽重整器在常温和高温下实现的碳和氧势过热的条件。两种合金都产生外部富铬氧化物鳞片,树状内二氧化硅沉淀和树突间氧化物突起,其中原生的树突间碳化物被原位氧化。出人意料的是,较低的硅含量/二元合金会形成更连续的内部二氧化硅层,从而减慢外部结垢。两种合金中的Intradendritic udoxidation都很快,并且归因于界面氧的扩散。两种合金都进行了 udraped内部渗碳处理,这表明它们的氧化皮未能阻止碳在这些反应条件下进入 underlying合金。

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