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首页> 外文期刊>Journal of nuclear engineering and radiation science >The Effect of Alkali Metal and Alkaline Earth Metal Impurities on the Iodine-Induced Corrosion of CANDU Fuel Sheathing
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The Effect of Alkali Metal and Alkaline Earth Metal Impurities on the Iodine-Induced Corrosion of CANDU Fuel Sheathing

机译:碱金属和碱土金属杂质对植物燃料护套碘腐蚀的影响

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摘要

During normal operation in Canada deuterium uranium (CANDU) reactors, the stress corrosion cracking (SCC) of fuel sheathing is mitigated effectively, in part, using a thin graphite-based coating known as CANDU lubricant (CANLUB). Mechanisms typically proposed for the demonstrated SCC mitigation offered by CANLUB include lubrication and/or chemical interactions. An additional possibility, that was recently suggested, involves the sequestering of iodine through its interaction with alkali metal and/or alkaline earth metal impurities in the CANLUB coating. This possibility is supported by the systematic analysis and testing in this paper, wherein three prevalent impurities (Na, Ca, and Mg) found in CANLUB were incorporated into SCC slotted ring experiments as metal oxides. When the amount of metal oxide (Na_2O, CaO, or MgO) matched or exceeded the amount of iodine (6 mmol = 16 mg/cm~3), Na_2O and CaO protected the rings from corrosion whereas MgO enhanced their corrosion. When Zircaloy-4 sheathing is subjected to mechanical stress, high temperature, and high concentrations of iodine vapor, it is better protected by siloxane coatings than by graphite-CANLUB coatings. Consequently, since metal impurities (Na, Ca, and Mg) are found more abundantly in siloxane coatings than in graphite-CANLUB coatings, Zircaloy-4 slotted rings were coated with graphite-CANLUB containing Na, Ca, and/or Mg at those more abundant concentrations. Since these concentrations remain below 6 mmol, SCC test results suggest that the siloxane's superior adhesion is an essential first step in preventing corrosion induced by 6 mmol of iodine.
机译:在加拿大氘铀(Candu)反应器的正常操作期间,部分地,使用称为Candu润滑剂(甘蓝)的薄石墨涂层有效地减轻燃料护套的应力腐蚀裂纹(SCC)。通常提出用于蜡奶提供的证明SCC缓解的机制包括润滑和/或化学相互作用。最近建议的额外可能性涉及通过其与罐装涂层中的碱金属和/或碱土金属杂质的相互作用来归存碘。本文的系统分析和测试支持这种可能性,其中在甘露壳中发现在甘露壳中的三种普遍的杂质(Na,Ca和Mg)作为金属氧化物掺入SCC开槽的环实验中。当金属氧化物(Na_2O,CaO或MgO)匹配或超过碘量(6mmol = 16mg / cm〜3)时,Na_2O和CaO保护来自腐蚀的环,而MgO可以增强它们的腐蚀。当锆瓦洛-4护套受到机械应力,高温和高浓度的碘蒸汽时,通过硅氧烷涂层优于石墨罐涂层,更好地保护。因此,由于金属杂质(Na,Ca和Mg)在硅氧烷涂层中比在石墨酰桶涂层中更充分地发现,因此在那些更多的情况下涂覆含有含有Na,Ca和/或Mg的石墨罐 - 4的锆石环。丰富的浓度。由于这些浓度仍然低于6mmol,SCC测试结果表明硅氧烷的卓越粘附性是预防6mmol碘诱导的腐蚀的重要第一步。

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    Department of Chemistry and Chemical Engineering Royal Military College of Canada;

    Department of Mechanical and Materials Engineering Queen's University;

    Department of Chemistry and Chemical Engineering Royal Military College of Canada;

    Department of Chemistry and Chemical Engineering Royal Military College of Canada;

    Department of Chemistry and Chemical Engineering Royal Military College of Canada;

    Department of Chemistry and Chemical Engineering Royal Military College of Canada;

    Department of Mechanical and Materials Engineering Queen's University;

    Department of Chemistry and Chemical Engineering Royal Military College of Canada;

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