Design and Development of Intelligent Replacement Robot for Radioactive Spent Filter Element in NPP and Its Performance Validation

Yongjun Ge, Yishan Lin, Honghu Xie, Jinchun Yang
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Abstract

During the operation of a nuclear power plant, many main systems will generate variety of radioactive spent filter elements. These filter elements are main solid waste which need to be replaced regularly to keep safety of these systems. Because these filter elements have a certain level of radioactivity, the replacement operation has a higher risk. Therefore, according to the national and nuclear power plant radioactive waste regulations, it is necessary to ensure the safe and reliable operation of the radiation protection, make sure that operator and facilities are protected from radiation exposure or minimized. Based on the analysis of the filter element replacement process and equipment of domestic nuclear power units in service, combined with the requirements of newel construction of intelligent nuclear power plants, it is necessary to propose a radioactive spent filter element intelligent replacement ROBOT program. This paper discusses the design scheme of a new intelligent replacement robot for radioactive spent filter elements, and key issues involving fully automatic replacement technology for radioactive filter elements, such as filter layout and filter element replacement process optimization, robot grabbing actuator design, robot positioning mechanism design and accuracy guarantee, etc. have been systematically studied. A set of robot systems with intelligent replacement of radioactive irrationality have been developed. The test has been verified and the technical conditions for implementation in NPP have been met.
核电厂放射性废滤芯智能置换机器人的设计与研制及其性能验证
在核电站运行过程中,许多主系统会产生各种放射性废滤元件。这些滤芯是主要的固体废物,需要定期更换,以保证这些系统的安全。由于这些滤芯具有一定的放射性,更换操作风险较高。因此,根据国家和核电厂放射性废物法规,必须确保辐射防护安全可靠运行,确保操作人员和设施免受辐射暴露或最小化。在分析国内在役核电机组滤芯更换工艺及设备的基础上,结合智能化核电站新建的要求,有必要提出一种放射性废滤芯智能更换机器人方案。本文讨论了一种新型放射性废滤芯智能更换机器人的设计方案,系统研究了涉及放射性滤芯全自动更换技术的关键问题,如过滤器布局和滤芯更换工艺优化、机器人抓取致动器设计、机器人定位机构设计和精度保证等。研制了一套具有放射性非理性智能替代功能的机器人系统。经试验验证,达到了在核电站实施的技术条件。
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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