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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Materials degradation in fission reactors: Lessons learned of relevance to fusion reactor systems
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Materials degradation in fission reactors: Lessons learned of relevance to fusion reactor systems

机译:裂变反应堆中的材料降解:与聚变反应堆系统相关的经验教训

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The management of materials in power reactor systems has become a critically important activity in assuring the safe, reliable and economical operation of these facilities. Over the years, the commercial nuclear power reactor industry has faced numerous 'surprises' and unexpected occurrences in materials. Mitigation strategies have sometimes solved one problem at the expense of creating another. Other problems have been solved successfully and have motivated the development of techniques to foresee problems before they occur. This paper focuses on three aspects of fission reactor experience that may benefit future fusion systems. The first is identification of parameters and processes that have had a large impact on the behavior of materials in fission systems such as temperature, dose rate, surface condition, gradients, metallurgical variability and effects of the environment. The second is the development of materials performance and failure models to provide a basis for assuring component integrity. Last is the development of proactive materials management programs that identify and pre-empt degradation processes before they can become problems. These aspects of LWR experience along with the growing experience with materials in the more demanding advanced fission reactor systems form the basis for a set of 'lessons learned' to aid in the successful management of materials in fusion reactor systems. (C) 2007 Elsevier B.V. All rights reserved.
机译:动力反应堆系统中的材料管理已成为确保这些设施安全,可靠和经济运行的至关重要的活动。多年来,商业核动力反应堆行业面临着众多的“意外”和意外的材料事件。缓解策略有时以解决另一个问题为代价来解决一个问题。其他问题已经成功解决,并激发了技术发展以预见问题的发生。本文关注裂变反应堆经验的三个方面,这些方面可能会有益于未来的聚变系统。首先是确定对裂变系统中材料的性能有重大影响的参数和过程,例如温度,剂量率,表面条件,梯度,冶金变异性和环境影响。第二个是材料性能和失效模型的开发,以确保组件完整性。最后是开发主动材料管理程序,该程序可以在降解过程成为问题之前识别并抢先进行。轻水堆经验的这些方面,以及对更苛刻的先进裂变反应堆系统中材料的日益丰富的经验,构成了一系列“经验教训”的基础,以帮助成功管理聚变反应堆系统中的材料。 (C)2007 Elsevier B.V.保留所有权利。

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