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Dimensional Stability of Low Enriched Uranium Silicide Plate-Type Fuel for Research Reactors at Transient Conditions

机译:瞬态条件下研究堆低浓硅化铀平板型燃料的尺寸稳定性

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This paper describes the result of transient experiments using low enriched uranium silicide plate-type fuel for research reactors. The pulse irradiation was carried out at Nuclear Safety Research Reactor (NSRR) in Japan Atomic Energy Research Institute. The results obtained were :(1) At fuel plate temperature of below 400°C, a good dimensional stability of the tested fuel was kept. No fuel failure occurred.(2) At a plate temperature of about 540°C, a local crack was initiated on the Al-3% Mg alloy cladding. Once the cladding temperature exceeded the melting point of 640°C, the fuel plate was degraded much by increased bowing and cracking of the denuded fuel meat occurred after relocation of molten Al cladding. Despite of these degradation, neither fragmentation of the fuel plate nor mechanical energy generation occurred up to the cladding temperature of 971°C.(3) At the temperatures of around 925°C, the reaction of silicide particles with molten Al in the matrix and that of cladding occurred, forming Al riched U (Al, Si) compounds and Si riched (U, Si) compounds at the outermost surface of the silicide particles.
机译:本文介绍了使用低浓硅化铀平板型燃料进行研究堆的瞬态实验的结果。脉冲辐射在日本原子能研究所的核安全研究堆(NSRR)上进行。得到的结果是:(1)在燃料板温度低于400℃时,保持了测试燃料的良好尺寸稳定性。没有发生燃料故障。(2)在约540°C的板温下,Al-3%Mg合金熔覆层开始出现局部裂纹。一旦包层温度超过640°C的熔点,燃料板就会因弯曲程度的增加而大大退化,并且在重新放置熔融的Al包层后,会出现裸露的燃料肉破裂。尽管有这些退化,但在971°C的包层温度下,燃料板的碎裂和机械能的产生都没有发生。(3)在925°C左右的温度下,硅化物颗粒与基体中熔融Al的反应以及发生覆层熔合,在硅化物颗粒的最外表面形成了富铝的U(Al,Si)化合物和富硅的(U,Si)化合物。

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