Robotics applied in the module for fabrication and refabrication of dense mixed uranium-plutonium fuel of the pilot demonstration energy complex of «SCP» JSC. Decommissioning of nuclear and radiation hazardous facilities as a driver of Russia’s and world robotics markets

V. Tinin, D. Zozulya, E. Lachkanov, Andrey Dakhno
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Abstract

The article is devoted to the topic of great current interest that is the issue of using robots in the nuclear industry, in particular, in the module for fabrication and refabrication (MFR) of dense mixed uranium-plutonium fuel of the Pilot Demonstration Energy Complex (PDEC) of “SCP” JSC. The author attributes this to the danger or impossibility of direct participation of a person in some operations associated with adverse effects of high radiation burden and toxicity on the human body. Therefore, the author emphasizes the need to use technologies for indirect control of a number of processes or their automation, partial or complete. Particular attention is paid to the fact that robots are not introduced into existing production lines, but the robotic fabrication of fuel is implemented from the very outset, i.e. at the design stage. The author predicts that one of the benefits gained from the employment of robots will be the ability to ensure product quality at a more stable level. The article clarifies that, at the MFR, robotic manipula-tors, automated guided carts (AGC), and transfer carts will be used in the principal process in operations con-cerned with the fabrication of fuel assemblies, when handling radioactive waste, and in automated transport sys-tem lines. The growing need to solve the problems of decommissioning of nuclear energy facilities (NEF) requires new approaches to their implementation, including the minimization of human work directly in conditions of in-creased radiation background. As such an approach, it is suggested to use modern robotic technologies that make it possible to efficiently resolve problems at all stages of decommissioning of nuclear energy facilities, thereby adopting a comprehensive problem-solving approach and laying the groundwork for the future. The introduction of robotic complexes within the framework of the federal project not only has practical value for the NEF decommis-sioning in terms of resource efficiency, cost optimization and speed of project work, but also enables the imple-mentation of Russia’s strategic tasks in the social and economic spheres.
机器人技术应用于“SCP”JSC试点示范能源综合体的致密混合铀钚燃料制造和再制造模块。核和辐射危险设施的退役是俄罗斯和世界机器人市场的驱动力
本文专门讨论了当前人们非常感兴趣的话题,即在核工业中使用机器人的问题,特别是在“SCP”JSC试点示范能源综合体(PDEC)的致密混合铀-钚燃料的制造和再制造模块(MFR)中。提交人将此归因于一个人有危险或不可能直接参与与高辐射负担和对人体毒性的不利影响有关的某些手术。因此,作者强调需要使用技术间接控制一些过程或其自动化,部分或全部。特别值得注意的是,机器人没有被引入现有的生产线,但燃料的机器人制造从一开始就实施了,即在设计阶段。作者预测,使用机器人的好处之一将是能够确保产品质量处于更稳定的水平。本文阐明,在MFR,机器人操纵器、自动导向车(AGC)和转移车将用于与燃料组件制造有关的操作的主要过程中,当处理放射性废物时,以及自动化运输系统线。解决核能设施退役问题的日益需要要求采取新的执行办法,包括尽量减少在辐射背景增加的条件下直接进行的人力工作。因此,建议采用现代机器人技术,有效解决核能设施退役各个阶段的问题,从而采取综合解决问题的方法,为未来奠定基础。在联邦项目框架内引入机器人综合体,不仅在资源效率、成本优化和项目工作速度方面对NEF退役具有实际价值,而且能够实现俄罗斯在社会和经济领域的战略任务。
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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