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Hydride Reorientation and Delayed Hydride Cracking of Spent Fuel Rods in Dry Storage

机译:干存储中乏燃料棒的氢化物重定向和延迟氢化物裂解

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摘要

The aim of this work is to investigate the effect of thermal creep during vacuum drying of spent fuel rods on hydride reorientation and their delayed hydride cracking (DHC) susceptibility. To these ends, we analyzed Tsai’s thermal creep results of irradiated Zircaloy-4 cladding segments from two pressurized water reactors and Simpson and Ells’ observation where zirconium alloy cladding tube failed during long-term storage at room temperature. On cooling under 190 MPa, the spent fuel rods crept to 3.5 pct strain during vacuum drying showed large radial hydrides, while the ones crept to 0.35 pct strain had very fine radial hydrides. Thus, it is suggested that prior creep deformation promotes hydride reorientation in spent fuel rods on cooling after vacuum drying. Evidence for this suggestion is provided by a model experiment. Considering Kim’s DHC model and experimental facts showing precipitation of hydrides even at room temperature at stress raisers, we suggest that spent fuel rods would fail by DHC in dry storage if stress raisers are present inside the cladding on cooling to below 180 °C, and then axial splits of the failed spent fuel rods would occur by DHC due to fuel expansion by UO2 oxidation.
机译:这项工作的目的是研究真空干燥废燃料棒期间的热蠕变对氢化物重新定向及其延迟氢化物裂解(DHC)敏感性的影响。为此,我们分析了Tsai在两个压水反应堆中辐照过的Zircaloy-4熔覆段的热蠕变结果,以及Simpson和Ells的观察结果,即在室温下长期储存时,锆合金熔覆管失效。在冷却至190 MPa时,在真空干燥过程中蠕变至3.5 pct应变的乏燃料棒显示出较大的径向氢化物,而蠕变至0.35 pct应变的那些则具有非常细的径向氢化物。因此,建议在真空干燥后冷却时,先前的蠕变变形会促进乏燃料棒中的氢化物重新定向。模型实验提供了此建议的证据。考虑到Kim的DHC模型和实验结果表明,即使在室温下,应力产生器也会出现氢化物沉淀,我们建议,如果冷却到180°C以下时覆层内部存在应力产生器,则干式储存中的乏燃料棒会因DHC在干式存储中失效。 DHC会由于UO2 氧化而使燃料膨胀,从而使失效的乏燃料棒发生轴向分裂。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第12期|2867-2875|共9页
  • 作者

    Young S. Kim;

  • 作者单位

    Nuclear Material Research Division Korea Atomic Energy Research Institute Yuseong Daejeon 305-353 Korea;

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  • 正文语种 eng
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