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首页> 外文期刊>Corrosion science >Anomalous temperature dependence of oxidation kinetics during steam oxidation of ferritic steels in the temperature range 550-650℃
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Anomalous temperature dependence of oxidation kinetics during steam oxidation of ferritic steels in the temperature range 550-650℃

机译:550-650℃温度范围内铁素体钢蒸汽氧化过程中氧化动力学的异常温度依赖性

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摘要

The oxidation behavior of a number of selected ferritic steels in a simulated steam environment at temperatures between 550 and 650℃ was studied. In the prevailing test gas, some of the studied 9-12% Cr steels tended to exhibit an anomalous temperature dependence of the oxidation behavior. This means, that the oxidation rates do not steadily increase with increasing temperature. At higher temperatures, some of the studied steels tend to form a very thin and protective oxide scale whereas at lower temperature rapidly growing, less-protective oxides are being developed. The anomalous temperature dependence is related to differences in chromium distribution in the inner part of the oxide scale. The effect is observed for steels with intermediate-Cr contents (~10-12%) whereas steels with either lower or higher Cr contents exhibit an increasing oxidation rate with increasing temperature.
机译:研究了许多选定的铁素体钢在550至650℃之间的模拟蒸汽环境中的氧化行为。在主要的测试气体中,某些研究过的9-12%Cr钢倾向于表现出对氧化行为的反常温度依赖性。这意味着氧化速率不会随着温度的升高而稳定增加。在较高的温度下,某些已研究的钢趋于形成非常薄的保护性氧化皮,而在较低温度下迅速增长,正在开发保护性较低的氧化物。温度异常与氧化皮内部的铬分布差异有关。对于中等Cr含量(〜10-12%)的钢,观察到了这种效果,而较低或较高Cr含量的钢的氧化速率随温度升高而增加。

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