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首页> 外文期刊>Oxidation of Metals >Effect of Cr and Ni Contents on the Oxidation Behavior of Ferritic and Austenitic Model Alloys in Air with Water Vapor
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Effect of Cr and Ni Contents on the Oxidation Behavior of Ferritic and Austenitic Model Alloys in Air with Water Vapor

机译:Cr和Ni含量对水蒸气在空气中铁素体和奥氏体模型合金氧化行为的影响

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摘要

Ferritic and austenitic model alloys with various contents of Cr and Ni ranging between 10–20% and 0–30%, respectively, were oxidized in air + 10% water vapor during 1 hr cyclic oxidation at 650°C and 800°C. Depending on the alloy composition and temperature, either a thin protective oxide scale was observed or accelerated attack occurred which sometimes included spallation. For austenitic model alloys, increasing either the Cr or Ni contents delayed the accelerated attack. For lower Cr and Ni contents at 800°C, accelerated attack, including spallation, occurred at short exposure times. No spallation was observed for the ferritic model alloys. However, accelerated attack can occur quickly with low Cr contents. Increasing the temperature delayed the breakaway observed on ferritic alloys whereas it reduced the protective-oxide-growth stage for austenitic alloys.
机译:在650°C和800°C的1小时循环氧化过程中,在空气+ 10%水蒸气中氧化的铬和镍含量分别在10%至20%和0%至30%之间的铁素体和奥氏体模型合金。根据合金成分和温度的不同,观察到薄的保护性氧化皮或发生了加速侵蚀,有时包括剥落。对于奥氏体模型合金,增加Cr或Ni的含量会延迟加速腐蚀。对于在800°C下较低的Cr和Ni含量,在较短的暴露时间内会发生加速侵蚀,包括剥落。铁素体模型合金未观察到散裂。但是,Cr含量低时,会很快发生加速腐蚀。温度的升高延迟了在铁素体合金上观察到的分离,而这降低了奥氏体合金的保护性氧化物生长阶段。

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