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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Long term corrosion on T91 and AISI1 316L steel in flowing lead alloy and corrosion protection barrier development: Experiments and models
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Long term corrosion on T91 and AISI1 316L steel in flowing lead alloy and corrosion protection barrier development: Experiments and models

机译:流动铅合金中T91和AISI1 316L钢的长期腐蚀和腐蚀防护层的发展:实验和模型

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摘要

Considering the status of knowledge on corrosion and corrosion protection and especially the need for long term compatibility data of structural materials in HLM a set of experiments to generate reliable long term data was defined and performed. The long term corrosion behaviour of the two structural materials foreseen in ADS, 316L and T91, was investigated in the design relevant temperature field, i.e. from 300 to 550 °C. The operational window of the two steels in this temperature range was identified and all oxidation data were used to develop and validate the models of oxide scale growth in PbBi. A mechanistic model capable to predict the oxidation rate applying some experimentally fitted parameters has been developed. This model assumes parabolic oxidation and might be used for design and safety relevant investigations in future. Studies on corrosion barrier development allowed to define the required Al content for the formation of thin alumina scales in LBE. These results as well as future steps and required improvements are discussed. Variation of experimental conditions clearly showed that specific care has to be taken with respect to local flow conditions and oxygen concentrations.
机译:考虑到有关腐蚀和腐蚀防护的知识水平,尤其是需要HLM中结构材料的长期相容性数据,定义并执行了一组实验来生成可靠的长期数据。在设计相关的温度范围(即300至550°C)中研究了ADS中预见的两种结构材料316L和T91的长期腐蚀行为。确定了两种钢在此温度范围内的运行窗口,并使用所有氧化数据来开发和验证PbBi中氧化物垢生长的模型。已开发出一种能够使用一些实验拟合参数来预测氧化速率的机理模型。该模型假定为抛物线氧化,将来可能用于设计和安全性相关研究。腐蚀阻挡层发展的研究可以确定在LBE中形成薄氧化铝鳞片所需的Al含量。讨论了这些结果以及未来的步骤和所需的改进。实验条件的变化清楚地表明,必须特别注意局部流动条件和氧气浓度。

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