首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.3 >COMPARISONS OF THE OXIDE LAYER BETWEEN STATIC LIQUID-BISMUTH-EUTECTIC AND GAS ENVIRONMENTS
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COMPARISONS OF THE OXIDE LAYER BETWEEN STATIC LIQUID-BISMUTH-EUTECTIC AND GAS ENVIRONMENTS

机译:静态液体-铋-共晶与气体环境之间的氧化层比较

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摘要

The competition between corrosion and oxidation on a steel surface immersed in lead alloys with controlled oxygen leads to different oxide-layer characteristics as compared with those formed in gases. The presence of a liquid metal [liquid lead or lead-bismuth eutectic (LBE)] can either enhance or reduce the oxidation rate, resulting in different oxide growth rates and microstructures. Based on analysis of experimental results in static LBE/lead and gases under the same experimental conditions, we predict the oxide-layer structure and thickness as functions of immersion time and analyze the factors that play important roles in the oxidation process in LBE/lead. It is shown that there is a significant difference between the oxide formed in liquid lead alloys and in gases, including the oxide-layer structure. To generate a stable protective oxide layer on steel surfaces in LBE, the long-term corrosion effect, the supply of oxygen, and the penetration of the liquid metal into the structural materials or oxide layers must be taken into account.
机译:与在气体中形成的氧化物相比,浸入含受控氧的铅合金的钢表面上的腐蚀和氧化之间的竞争导致了不同的氧化物层特性。液态金属[液态铅或铅铋共晶(LBE)]的存在可以提高或降低氧化速率,从而导致不同的氧化物生长速率和微观结构。基于在相同实验条件下在静态LBE /铅和气体中的实验结果的分析,我们预测了氧化层的结构和厚度随浸入时间的变化,并分析了在LBE /铅的氧化过程中起重要作用的因素。结果表明,在液态铅合金和气体中形成的氧化物(包括氧化物层结构)之间存在显着差异。为了在LBE中的钢表面上生成稳定的保护性氧化层,必须考虑长期腐蚀作用,氧气的供应以及液态金属渗透到结构材料或氧化层中的情况。

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