Corrosion characteristics of T91 steel in lead–bismuth eutectic with different oxygen concentrations at 500°C

S. Tian, Yongqiang Pang, Zhizhong Jiang, L. Luo, Zunqi Xiao
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引用次数: 8

Abstract

Corrosion tests of T91 were carried out in the stagnant lead–bismuth eutectic (LBE) containing 10−6, 10−7, and 10−8 wt% oxygen at 500°C for up to 2000 h, respectively. The dependence of corrosion characteristics on oxygen concentrations in LBE was obtained. The results show that the oxide‐scale structure changes from a three‐layer magnetite/spinel/internal oxidation zone (IOZ) scale under the oxygen concentration of 10−6 wt%, to the formation of a two‐layer spinel/IOZ scale under the oxygen concentrations of 10−7 and 10−8 wt%. In addition, with the decrease of the oxygen concentration, the Cr/Fe ratio in the Fe–Cr spinel slightly increases in a linear rule while the thicknesses of the oxide layers gradually decrease.
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T91钢在500℃不同氧浓度铅铋共晶中的腐蚀特性
T91的腐蚀试验分别在含10 - 6、10 - 7和10 - 8 wt%氧的停滞铅铋共晶(LBE)中进行,温度为500°C,持续时间为2000 h。得到了LBE中氧浓度与腐蚀特性的关系。结果表明:氧浓度为10 ~ 6 wt%时,氧化层结构由磁铁矿/尖晶石/内氧化带(IOZ)三层结构转变为氧浓度为10 ~ 7和10 ~ 8 wt%时的尖晶石/内氧化带(IOZ)两层结构。此外,随着氧浓度的降低,Fe - Cr尖晶石中Cr/Fe比值呈线性增加趋势,氧化层厚度逐渐减小。
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