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Cermet sphere-pac concept for inert matrix fuel

机译:金属陶瓷pac-pac用于惰性基质燃料的概念

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摘要

In the inert matrix fuel concept, plutonium reprocessed from spent fuel is burned in an inert matrix, e.g. yttria-stabilized zirconia. Coming from wet reprocessing, the internal gelation can perform an easy micro-spheres production. Utilization of these particles in a sphere-pac realizes a direct fuel production. Besides being economical, this direct usage offers an almost dustless fabrication. One disadvantage of yttria-stabilized zirconia as matrix is its low thermal conductivity. A further reduction by the macroscopic structure of a sphere bed seems unacceptable. This can be eluded by the insertion of a highly conducting phase. Similar to the cermet concept with the embedment of ceramic fuel into metal, the infiltration of a fine metal fraction into a coarse ceramic fuel fraction is studied here. The initial thermal conductivity shows much higher calculated values and the sintering behaviour is also clearly enhanced compared to the pure ceramic bed. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 12]
机译:在惰性基质燃料概念中,将从乏燃料中再处理的p在惰性基质中燃烧,如氧化钇稳定的氧化锆。来自湿法后处理,内部凝胶化可以轻松进行微球生产。利用球形pac中的这些颗粒可实现直接的燃料生产。除了经济之外,这种直接使用还提供了几乎无尘的制造。氧化钇稳定的氧化锆作为基质的一个缺点是其低导热性。通过球床的宏观结构的进一步减小似乎是不可接受的。插入高导电相可以避免这种情况。类似于将陶瓷燃料嵌入金属中的金属陶瓷概念,此处研究了细金属组分向粗陶瓷燃料组分的渗透。初始热导率显示出更高的计算值,并且与纯陶瓷床相比,烧结性能也得到明显提高。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:12]

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