首页> 外国专利> Coating method for the preparation of coated nuclear fuels with carbides borides or nitrides by using high temperature and high pressure combustion synthesis

Coating method for the preparation of coated nuclear fuels with carbides borides or nitrides by using high temperature and high pressure combustion synthesis

机译:高温高压燃烧合成制备碳化硼化物或氮化物涂层核燃料的涂覆方法

摘要

The present invention relates to a coating method for the preparation of a coated nuclear fuel. Particularly, the present invention relates to the coating method of nuclear fuel surface with more than two coated layers of carbides, borides or nitrides and their compounds comprising deposition or permeation steps of i) elements or mixture that can form carbides, borides or nitrides and ii) a layer of pyrolytic carbon or boron prepared by chemical vapor deposition(CVD) or sputtering in sequence or in reverse sequence, or nitrogen prepared by gas permeation in sequence, on the nuclear fuel surface. The coated layers are formed with carbides, borides, nitrides or their mixture at high temperature and pressure by a combustion synthesis. The coating method of this invention can be applied to various types of nuclear fuels either in particle or in pellet type and control and preserve fine crystal structure without phase transition since the surface of nuclear fuel coated with pyrolytic carbon and silicon is heated only for several seconds by heat source such as laser beam, arc or microwave. Thus, the present invention is excellent method of coating nuclear fuel surface not only for particle type fuel which used in High Temperature Gas-cooled Reactor (HTGR) but also for pellet type fuel used for Water-cooled Reactors.
机译:本发明涉及用于制备包覆核燃料的包覆方法。特别地,本发明涉及具有多于两个的碳化物,硼化物或氮化物及其化合物的涂层的核燃料表面的涂覆方法,其包括i)可以形成碳化物,硼化物或氮化物的元素或混合物的沉积或渗透步骤,以及)在核燃料表面上按顺序或相反顺序通过化学气相沉积(CVD)或溅射制备的热解碳或硼层,或按顺序通过气体渗透制备的氮层。涂层通过燃烧合成在高温和高压下由碳化物,硼化物,氮化物或其混合物形成。由于涂有热解碳和硅的核燃料的表面仅加热几秒钟,所以本发明的涂覆方法可以以颗粒或颗粒形式应用于各种类型的核燃料,并且可以控制和保持微晶结构而没有相变。通过热源,例如激光束,电弧或微波。因此,本发明不仅是用于高温气冷堆(HTGR)的颗粒型燃料,而且是用于水冷反应堆的颗粒型燃料的核燃料表面涂覆的优良方法。

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