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Preparation and Characterization of Pu_(0.5)Am_(0.5)O_(2-x)-MgO Ceramic/Ceramic Composites

机译:Pu_(0.5)Am_(0.5)O_(2-x)-MgO陶瓷/陶瓷复合材料的制备与表征

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This study describes the preparation and characterization of Pu_(0.5)Am_(0.5)O_(2-x)-MgO ceramic/ ceramic (cercer) composites with 20 and 30 vol% of Pu_(0.5)Am_(0.5)O_(2-x). The sintered materials demonstrated very different reduction behavior when exposed to a reducing sintering cycle. The composites were studied by combined X-ray diffraction (XRD) and oxygen-to-metal ratio measurements and exhibited various amounts of body-centered-cubic (bcc) and face-centered-cubic (fcc) phases corresponding to different reduction states of the mixed actinide oxide. The fcc phases correspond to a near stoichiometry phase while the bcc phases are attributed to most reduced phases, which demonstrate a greater similarity with the Am_2O_3 bcc phase. The XRD results suggest a reduction of Am prior to Pu, which explains this greater similarity. In addition, the 30 vol% composite contains 65 wt% of the bcc phase while the 20 vol% composite exhibits only 29 wt%. This result can be explained by the percolation theory when applied to the oxygen diffusivity and indicates that a threshold value for Pu_(0.5)Am_(0.5)O_(2-x) content in the cercer composite exists where the reduction of the mixed oxide significantly increases.
机译:这项研究描述了Pu_(0.5)Am_(0.5)O_(2-x)-MgO陶瓷/陶瓷(陶瓷)复合材料的制备和表征,该复合材料具有20和30%(体积)的Pu_(0.5)Am_(0.5)O_(2- X)。当暴露于减少的烧结循环时,烧结材料表现出非常不同的减少行为。通过X射线衍射(XRD)和氧金属比的组合测量研究了复合材料,并显示出不同量的体心立方(bcc)和面心立方(fcc)相,分别对应于不同的还原态。混合的act系元素氧化物。 fcc相对应于接近化学计量的相,而bcc相归因于大多数还原相,这表明与Am_2O_3 bcc相具有更大的相似性。 XRD结果表明,Pu之前的Am降低,这解释了这种更大的相似性。另外,30体积%的复合物包含65重量%的bcc相,而20体积%的复合物仅表现出29重量%。该结果可以用渗滤理论解释,当应用于氧扩散率时,表明在cercer复合材料中存在Pu_(0.5)Am_(0.5)O_(2-x)含量的阈值,其中混合氧化物的还原明显增加。

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