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Ultra Low Tin Quaternary Alloys PWR Performance-Impact of Tin Content on Corrosion Resistance, Irradiation Growth,and Mechanical Properties

机译:超低锡四元合金PWR性能-锡含量对耐腐蚀性,辐照生长和机械性能的影响

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The performance of Zr1 NbSnFe alloys within the range of Sn 0-0.65 % and Fe 0.03-0.35 % were studied through irradiation of fuel rods in two pressurized water reactors (PWRs) operating with significantly different fuel management strategies. Material test rod irradiations have also been launched in order to determine irradiation growth and corrosion behaviour on tubes irradiated under conditions representative of guide tubes. Results show that the increase in tin content up to 0.3 % does not significantly change the corrosion resistance nor the hydrogen pick-up compared to ZMNb alloy, while ensuring a higher creep resistance and an improved dimensional stability. On the contrary, at 0.5 % Sn, the corrosion resistance can be significantly degraded under demanding conditions. The iron addition to the alloy can be considered as a second order parameter for both corrosion and creep properties.
机译:通过在两个燃料管理策略显着不同的压水堆(PWR)中通过燃料棒的辐照研究了Zr1 NbSnFe合金在Sn 0-0.65%和Fe 0.03-0.35%范围内的性能。为了确定在代表导管的条件下辐照的管子上的辐照生长和腐蚀行为,还启动了材料测试棒辐照。结果表明,与ZMNb合金相比,锡含量增加至0.3%不会显着改变耐腐蚀性和氢吸收率,同时确保更高的耐蠕变性和改善的尺寸稳定性。相反,当锡含量为0.5%时,在苛刻的条件下,耐蚀性可能会大大降低。合金中铁的添加可以被认为是腐蚀和蠕变性能的二阶参数。

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