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ZrN coating as diffusion barrier in U(Mo) dispersion fuel systems

机译:Zrn涂层作为U(Mo)分散燃料系统的扩散屏障

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The control of the interaction between the U(Mo) fuel phase and the Al matrix is one of the challenges of dispersion fuel plate development for research reactors. Given the specific properties of this interaction layer, larger amounts of it in the meat could lead to a reduction of the plate mechanical integrity and thermal conductivity, eventually leading to pillowing. The SELENIUM project showed that by depositing a ZrN coating on the surface of the U(Mo) fuel particles, the amount of formed U(Mo)-Al interaction layer is limited but still present. Microstructural analysis performed on the as fabricated coating and fresh fuel plates containing ZrN coated U(Mo) dispersed in an Al matrix, revealed that the coating gets damaged during plate production. The post irradiation examinations (PIE) of the ZrN coated U(Mo) fuel plates, from the SELENIUM and SEMPER FIDELIS experiments, show how the U(Mo)-Al interaction layer is formed -only at those locations where the coating is missing or damaged -and the evolution of coating microstructure during irradiation. As a remedy, to further reduce the amount of interaction layer formed, the use of an Al-Si matrix was proposed based on the higher affinity of Si for U compared to the affinity of Al for U. PIE of a fuel plate consisting of ZrN coated U(Mo) dispersed in an Al-Si matrix irradiated in the SEMPER FIDELIS experiment, clearly demonstrates the benefit of adding Si to the matrix.
机译:控制U(Mo)燃料相与铝基体之间的相互作用是研究反应堆分散燃料板开发的挑战之一。鉴于这种相互作用层的特殊性质,肉中的大量相互作用可能会导致板的机械完整性和导热性降低,最终导致起球。硒项目表明,通过在U(Mo)燃料颗粒表面沉积ZrN涂层,形成的U(Mo)-Al相互作用层数量有限,但仍然存在。对所制备的涂层和新燃料板进行的微观结构分析显示,涂层在板生产过程中受到损坏,其中含有分散在铝基体中的ZrN涂层U(Mo)。通过硒和SEMPER-FIDELIS实验,对涂有ZrN的U(Mo)燃料板进行辐照后检查(PIE),显示了U(Mo)-Al相互作用层是如何形成的(仅在涂层缺失或损坏的位置),以及辐照期间涂层微观结构的演变。作为一种补救措施,为了进一步减少形成的相互作用层的数量,基于Si对U的亲和力高于Al对U的亲和力,建议使用Al-Si基体。在SEMPER-FIDELIS实验中,由分散在Al-Si基体中的ZrN涂层U(Mo)组成的燃料板清楚地证明了向基体中添加Si的好处。

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