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Low-temperature synthesis of silicon carbide inert matrix fuel through a polymer precursor route

机译:通过聚合物前体路线低温合成碳化硅惰性基质燃料

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摘要

A low temperature process of mixing different sizes of silicon carbide (SiC) particles with a polymer precursor was utilized to synthesize SiC pellets for potential use as inert matrix fuels (IMF) for light water reactors. The lower temperature process is required to prevent the reactions between SiC and the dispersed PuO_2 fuel material. The effect of the polymer content and the cold pressing pressure on the packing of SiC particles was investigated. The effect of mixing coarse and fine SiC particles on the density and the pore size distribution was also investigated. It was found that the density and pore size distribution can be tailored by controlling the SiC size compositions, polymer content and pressing pressure at room temperature. A possible mechanism has been proposed to explain the forming of the pores with respect to the geometric arrangement between SiC particles and the polymer precursor. SEM images showed that ceria (cerium oxide) which is a PuO_2 surrogate in this study, was well distributed in the pellet.
机译:利用将不同尺寸的碳化硅(SiC)颗粒与聚合物前体混合的低温工艺,可以合成SiC颗粒,从而有可能用作轻水反应堆的惰性基质燃料(IMF)。需要较低的温度过程以防止SiC与分散的PuO_2燃料材料之间发生反应。研究了聚合物含量和冷压压力对SiC颗粒堆积的影响。还研究了混合粗和细SiC颗粒对密度和孔径分布的影响。发现可以通过控制室温下的SiC尺寸组成,聚合物含量和压制压力来调节密度和孔径分布。已经提出了一种可能的机理来解释关于SiC颗粒和聚合物前体之间的几何排列的孔的形成。 SEM图像表明,在本研究中作为PuO_2替代物的二氧化铈(氧化铈)在颗粒中分布良好。

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