首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Corrosion kinetics of Steel T91 in flowing oxygen-containing lead-bismuth eutectic at 450 °c
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Corrosion kinetics of Steel T91 in flowing oxygen-containing lead-bismuth eutectic at 450 °c

机译:T91钢在450°c下流动的含氧铅铋共晶中的腐蚀动力学

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摘要

Specimens cut from two different sample materials of T91 ferritic/martensitic steel were exposed for up to 8000 h to flowing oxygen-containing lead-bismuth eutectic (LBE) at 450 °C, 2 m/s flow velocity and oxygen concentration averaging 1.1 × 10 ~(-6) mass%. Under these conditions, T91 forms an essentially bi-layer corrosion scale consisting of magnetite and iron-chromium spinel, whose thickness as a function of exposure time was measured in the light-optical microscope. The accompanying metal recession was assessed independently by a metallographic method as well. The quantitative data was analysed using different kinetic laws, in consideration of the results of electron-microscopic investigations and energy-dispersive X-ray micro-analyses of the scale. The implications of the data with respect to a solid-state transformation at the magnetite/spinel interface and extrapolation of the data to times relevant for operation of LBE-cooled nuclear systems is discussed.
机译:从两种不同的T91铁素体/马氏体样品材料中切下的样品在450°C,2 m / s的流速和平均1.1×10的氧浓度下暴露于流动的含氧铅铋共晶(LBE)长达8000 h 〜(-6)质量%。在这些条件下,T91形成了基本上由磁铁矿和铁铬尖晶石组成的双层腐蚀垢,其厚度随曝光时间的变化是在光学显微镜下测量的。伴随的金属衰退也通过金相方法独立地评估。考虑到电子显微镜研究的结果和能量色散X射线显微分析的结果,使用不同的动力学定律分析了定量数据。讨论了数据对磁铁矿/尖晶石界面的固态转变以及将数据外推到与LBE冷却核系统运行有关的时间的影响。

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