首页> 外文会议>ASME Nuclear Forum >FISSION PRODUCTS DISTRIBUTION IN TRISO COATED FUEL PARTICLES IRRADIATED TO 3.22×10~(21) N/CM~2 FAST FLUENCE AT 1092°C
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FISSION PRODUCTS DISTRIBUTION IN TRISO COATED FUEL PARTICLES IRRADIATED TO 3.22×10~(21) N/CM~2 FAST FLUENCE AT 1092°C

机译:裂变产物分布在Triso涂覆的燃料颗粒中照射到3.22×10〜(21)n / cm〜2快速注射1092°C的快速流量

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Mechanisms by which fission products (especially silver [Ag]) migrate across the coating layers of tristructural isotropic (TRISO) coated fuel particles designed for next generation nuclear reactors have been the subject of a variety of research activities due to the complex nature of the migration mechanisms. This paper presents results obtained from the electron microscopic examination of selected irradiated TRISO coated particles from fuel compact 1-3-1 irradiated in the first Advanced Gas Reactor experiment (AGR-1) that was performed as part of the Next Generation Nuclear Plant (NGNP) project. It is of specific interest to study particles of this compact as they were fabricated using a different carrier gas composition ratio for the SiC layer deposition compared with the baseline coated fuel particles reported on previously. Basic scanning electron microscopy (SEM) and SEM montage investigations of the particles indicate a correlation between the distribution of fission product precipitates and the proximity of the inner pyrolytic carbon (IPyC)-silicon carbide (SiC) interface to the fuel kernel. Transmission electron microscopy (TEM) samples were sectioned by focused ion beam (FIB) technique from the IPyC layer, the SiC layer and the IPyC-SiC interlayer of the coated fuel particle. Detailed TEM and scanning transmission electron microscopy (STEM) coupled with energy dispersive X-ray spectroscopy (EDS) were performed to identify fission products and characterize their distribution across the IPyC and SiC layers in the areas examined. Results indicate the presence of palladium-silicon-uranium (Pd-Si-U), Pd-Si, Pd-U, Pd, U, U-Si precipitates in the SiC layer and the presence of Pd-Si-U, Pd-Si, U-Si, U precipitates in the IPyC layer. No Ag-containing precipitates are evident in the IPyC or SiC layers. With increased distance from the IPyC-SiC interface, there are less U-containing precipitates, however, such precipitates are present across nearly the entire SiC layer.
机译:裂变产物(特别是银[Ag])迁移穿过用于下一代核反应堆设计的涂层层的涂层层,这是由于迁移的复杂性,这是各种研究活动的主题机制。从燃料紧凑选择照射TRISO包衣颗粒的电子显微镜检查获得本文呈现的结果1-3-1在第一高级气体反应器实验照射(AGR-1),将其作为下一代核电厂的一部分执行(NGNP ) 项目。与先前报道的基线涂覆的燃料颗粒相比,使用针对SiC层沉积的不同载气组成比来研究这种紧凑的颗粒是特别的兴趣。基本扫描电子显微镜(SEM)和SEM蒙特肟研究表明裂变产物沉淀物分布与内部热解碳(IPYC) - 碳化硅(SiC)界面与燃料核的接近之间的相关性。通过从IPYC层,SiC层和涂覆的燃料颗粒的IPYC-SiC层间分离透射电子显微镜(TEM)样品。进行详细的TEM和扫描透射电子显微镜(茎)与能量分散X射线光谱(EDS)进行耦合以鉴定裂变产物,并在所检查区域的地区的IPYC和SIC层中表征它们的分布。结果表明存在钯 - 硅 - 铀(Pd-Si-U),Pd-Si,Pd-U,Pd,U,U-Si在SiC层中沉淀和PD-Si-U,PD-的存在Si,U-Si,U沉淀在IPYC层中。在IPYC或SIC层中,含Ag含有Ag沉淀物。随着距IPYC-SiC界面的距离增加,含有较少的U含量的沉淀物,然而,这种沉淀物在几乎整个SiC层上存在。

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