New Materials and Coatings for Nuclear Technology

V. Okunev
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Abstract

The possibility of using new materials in nuclear and thermonuclear reactors is considered. Mixed mononitride (MN) with the addition of uranium nanopowder can be considered to be the most preferred fuel for the fast reactor. The following fuels are of interest for thermal neutron reactors: UO2.1, UN, U2N3, U3Si2with the addition of nanopowder of slightly enriched uranium or Be (BeO). Ceramic fuel containing depleted uranium with nano-additives of metallic uranium can be used in the blanket of a thermonuclear reactor. As a neutron multiplier in blanket, the long-lived minor actinides (237Np, 241 Am and 243 Am) can be used. There is a radioactive waste of nuclear reactors. Liquid lead and (or) its alloys have a number of advantages when cooling the core of a fast reactor or blanket of a thermonuclear reactor. The use of tungsten coatings of structural materials (stainless steel) contributes to solving the problem of corrosion and erosion in liquid lead. All innovations can be implemented within the framework of existing technologies.
核技术新材料与涂料
考虑了在核反应堆和热核反应堆中使用新材料的可能性。掺铀纳米粉的混合单氮燃料是快堆最理想的燃料。热中子反应堆有兴趣使用以下燃料:UO2.1、UN、U2N3、u3si2,并添加微浓铀或Be (BeO)纳米粉末。含贫铀和纳米金属铀添加剂的陶瓷燃料可用于热核反应堆的包层。长寿命的锕系元素(237Np、241am和243am)可作为包层中的中子倍增器。有核反应堆的放射性废料。液态铅和(或)其合金在冷却快堆堆芯或热核反应堆包层时具有许多优点。结构材料(不锈钢)使用钨涂层有助于解决液体铅中的腐蚀和侵蚀问题。所有创新都可以在现有技术的框架内实施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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