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Manufacturing Technology of Ceramic Pebbles for Breeding Blanket

机译:繁殖毯用陶瓷卵石的制造技术

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摘要

An open issue for the fusion power reactor is the choice of breeding blanket material. The possible use of Helium-Cooled Pebble Breeder ceramic material in the form of pebble beds is of great interest worldwide as demonstrated by the numerous studies and research on this subject. Lithium orthosilicate (Li4SiO4) is a promising breeding material investigated in this present study because the neutron capture of Li-6 allows the production of tritium, 6Li (n, t) 4He. Furthermore, lithium orthosilicate has the advantages of low activation characteristics, low thermal expansion coefficient, high thermal conductivity, high density and stability. Even if they are far from the industrial standard, a variety of industrial processes have been proposed for making orthosilicate pebbles with diameters of 0.1–1 mm. However, some manufacturing problems have been observed, such as in the chemical stability (agglomeration phenomena). The aim of this study is to provide a new methodology for the production of pebbles based on the drip casting method, which was jointly developed by the DICI-University of Pisa and Industrie Bitossi. Using this new (and alternative) manufacturing technology, in the field of fusion reactors, appropriately sized ceramic pebbles could be produced for use as tritium breeders.
机译:聚变动力反应堆的一个悬而未决的问题是育种毯材料的选择。卵石床形式的氦冷却卵石饲养者陶瓷材料的可能用途在世界范围内引起了极大的兴趣,对此主题的众多研究表明。正硅酸锂(Li4SiO4)是本研究中研究的有前途的育种材料,因为Li-6的中子俘获可以产生6Li(n,t)4He production。此外,原硅酸锂具有低活化特性,低热膨胀系数,高导热率,高密度和稳定性的优点。即使它们偏离工业标准,也已经提出了各种工业方法来制造直径为0.1–1 mm的原硅酸盐卵石。然而,已经观察到一些制造问题,例如化学稳定性(附聚现象)。这项研究的目的是提供一种基于滴铸法的卵石生产新方法,该方法是由比萨DICI大学和工业大学Bitossi联合开发的。使用这种新的(和替代的)制造技术,在聚变反应堆领域,可以生产尺寸合适的陶瓷卵石用作for育种者。

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