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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Diametral strain of fast reactor MOX fuel pins with austenitic stainless steel cladding irradiated to high burnup
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Diametral strain of fast reactor MOX fuel pins with austenitic stainless steel cladding irradiated to high burnup

机译:快燃高奥氏体不锈钢包层的快速反应堆MOX燃料销的径向应变

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摘要

The C3M irradiation test, which was conducted in the experimental fast reactor, "Joyo", demonstrated that mixed oxide (MOX) fuel pins with austenitic steel cladding could attain a peak pellet burnup of about 130 GWd/t safely. The test fuel assembly consisted of 61 fuel pins, whose design specifications were similar to those of driver fuel pins of a prototype fast breeder reactor, "Monju". The irradiated fuel pins exhibited diametral strain due to cladding void swelling and irradiation creep. The cladding irradiation creep strain were due to the pellet-cladding mechanical interaction (PCMI) as well as the internal gas pressure. From the fuel pin ceramographs and ~(137)Cs gamma scanning, it was found that the PCMI was associated with the pellet swelling which was enhanced by the rim structure formation or by cesium uranate formation. The PCMI due to cesium uranate, which occurred near the top of the MOX fuel column, significantly affected cladding hoop stress and thermal creep, and the latter effect tended to increase the cumulative damage fraction (CDF) of the cladding though the CDF indicated that the cladding still had some margin to failure due to the creep damage.
机译:在实验快速反应堆“ Joyo”中进行的C3M辐照测试表明,带有奥氏体钢包层的混合氧化物(MOX)燃料棒可以安全地达到约130 GWd / t的峰值燃尽。测试燃料组件由61个燃料销组成,其设计规格与原型快速增殖反应堆“ Monju”的驱动器燃料销相似。由于包层空隙膨胀和辐照蠕变,被辐照的燃料销显示出径向应变。包层辐照蠕变应变是由于颗粒-包层机械相互作用(PCMI)以及内部气压引起的。从燃料针脚陶瓷图和〜(137)Csγ扫描,发现PCMI与颗粒溶胀有关,颗粒溶胀通过边缘结构形成或尿酸铯形成而增强。由于尿酸铯引起的PCMI发生在MOX燃料塔顶部附近,显着影响了覆层的环向应力和热蠕变,尽管CDF表明,覆层的累积损伤率(CDF)倾向于增加覆层的累积损伤分数(CDF)。由于蠕变损伤,覆层仍具有一定的破坏余量。

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