中子射线照相技术在核动力工业中的应用

Aaron E. Craft , John P. Barton
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引用次数: 23

摘要

世界中子放射学会议(WCNR)和国际中子放射学专题会议(ITMNR)系列已经运行了35年。最近的ITMNR-8专注于工业应用,这是该系列首次在中国举办。在中国,有20多座新的核电站正在建设中,并且已经宣布了在15年内将核能力增加3倍的计划。在许多其他国家也有更多的前景。正如WCNR和ITMNR系列会议所报告的那样,中子试验在核电应用材料和组件的先前开发过程中至关重要。例如,《第一届世界核反应堆会议录》(Proceedings of the First WCNR)上的140篇论文中,大多数都是为了核电工业的利益。其中许多技术正在被利用并发展到今天。辐照核燃料的中子射线照相比迄今为止任何其他非破坏性技术都能提供有关辐照核燃料内部状况的更全面的信息。应用包括检查核废料、核燃料、包层、控制元件和其他关键部件。本文回顾了自早期以来国际上开发和应用的中子射线照相技术在核电工业中的应用,并提出了中子试验技术在当今和未来几代世界范围内的核电站的发展中是否有价值的问题。
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Applications of Neutron Radiography for the Nuclear Power Industry

The World Conference on Neutron Radiography (WCNR) and International Topical Meeting on Neutron Radiography (ITMNR) series have been running over 35 years. The most recent event, ITMNR-8, focused on industrial applications and was the first time this series was hosted in China. In China, more than twenty new nuclear power plants are under construction and plans have been announced to increase the nuclear capacity by a factor of three within fifteen years. There are additional prospects in many other nations. Neutron tests were vital during previous developments of materials and components for nuclear power applications, as reported in the WCNR and ITMNR conference series. For example a majority of the 140 papers in the Proceedings of the First WCNR are for the benefit of the nuclear power industry. Many of those techniques are being utilized and advanced to the present time. Neutron radiography of irradiated nuclear fuel provides more comprehensive information about the internal condition of irradiated nuclear fuel than any other non-destructive technique to date. Applications include examination of nuclear waste, nuclear fuels, cladding, control elements, and other critical components. In this paper, applications of neutron radiography techniques developed and applied internationally for the nuclear power industry since the earliest years are reviewed, and the question is asked whether neutron test techniques, in general, can be of value in development of the present and future generations of nuclear power plants world-wide.

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