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The Correlation Between Microstructures and in-BWR Corrosion Behavior of Highly Irradiated Zr-based Alloys

机译:高辐射Zr基合金微结构与BWWR腐蚀行为的相关性

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The microstructures of four kinds of Zircaloy-2-type materials with neutron exposure up to about 15 x 10~(25) n/m~2 (E > 1MeV) were examined to investigate the microstructural evolution and to correlate it with the in-reactor corrosion behavior at very high fluences. The materials examined in this study included two advanced Zr-based alloys with good corrosion resistance, namely High Fe Zry and High FeNi Zry, and two other kinds of Zry-2 materials with slightly different elemental compositions and fabrication processes producing differing second phase particle sizes. All alloys showed good corrosion behavior and low hydrogen pickup when irradiated up to four cycles in dummy neutron source holders located outside of channel boxes. After six irradiation cycles, all four of the alloys had an increase in the rate of uniform corrosion and hydrogen pickup. The results of the microstructure examinations after six-cycle irradiation indicated two interesting points: (1) increased insight into the dissolution process for Zr-Fe-Cr particles, and (2) a correlation between the number density of Zr-Fe-Cr particles surviving through irradiation and the corrosion behavior at high fluences. From these results, it is suggested that increasing the initial particle size and/or controlling the alloy chemistry would be beneficial to improve the uniform corrosion performance and to lower hydrogen pickup, especially at very high fluences.
机译:研究了四种锆卤代-2型材料的微观结构,中子曝光高达约15×10〜(25)n / m〜2(e> 1mev),以研究微观结构的进化并将其与IN-相关联电反应堆腐蚀行为在非常高的流量。本研究中检测的材料包括两种具有良好耐腐蚀性的先进的Zr基合金,即高Fe Zry和High Feni Zry以及另外两种Zry-2材料,具有略微不同的元素组合物和制造工艺,产生不同的第二相粒径。 。当在位于通道箱外部的虚拟中子源支架中照射到高达四个循环时,所有合金显示出良好的腐蚀行为和低氢拾取器。经过六次照射循环后,所有四种合金的均匀腐蚀和氢拾液速率增加。六周期照射后的微观结构检查结果表明了两个有趣的点:(1)对Zr-Fe-Cr颗粒的溶解过程的洞察力增加,(2)Zr-Fe-Cr颗粒的数量密度之间的相关性通过辐照和高流量的腐蚀行为生存。从这些结果来看,建议增加初始粒度和/或控制合金化学将有利于改善均匀的腐蚀性性能和降低氢拾取器,特别是在非常高的流量下。

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