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Scientific paradigms of structural safety of aged plants-Lessons learned from Russian activities

机译:老化植物结构安全的科学范式-从俄罗斯的活动中学到的经验教训

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摘要

The study of the effects behind the degradation of components and materials is becoming increasingly important for the safe operation of aged plants especially when it comes to life extension. Since the Russian nuclear community began to examine life extension issues nearly 15 years ago, there is much to learn from these pioneering studies. At the Ninth International Conference entitled 'Material Issues in Design, Manufacturing and Operation of Nuclear Power Plants Equipment' held in St. Petersburg, 2006, recent data were introduced regarding the ageing effects of mechanical properties of various kinds of steel and welding joints of Russian NPP components. The meeting was organized by the Central Research Institute of Structural Materials (CRISM) "Prometey" in cooperation with the IAEA and JRC-EU.rnIn reviewing the recent data presented at the Ninth Conference, the authors believe that the paradigms of structural integrity issues in aged plants are now reasonably well established in (1) fracture mechanics and irradiation hardening of reactor vessels and core internals and (2) thermal ageing and annealing effects. However, the first author, G. Saji, believes that the current approach of low-cycle fatigue is still unable to prevent and predict environmentally assisted cracks such as demonstrated in the IGSCC issues in the down-comer pipes of RBMK plants and various steam generator corrosion issues. This fundamental flaw stems from design codes, which do not incorporate the basic knowledge of electrochemical corrosion mechanisms as represented by the corrosion current.
机译:对于老化的植物的安全操作,尤其是在延长寿命方面,对成分和材料降解背后的影响进行研究变得越来越重要。自从近15年前俄罗斯核界开始研究延长寿命的问题以来,从这些开创性研究中可以学到很多东西。在2006年于圣彼得堡举行的第九届国际会议上,题为“核电厂设备的设计,制造和运行中的材料问题”,介绍了有关俄罗斯各种钢和焊接接头机械性能的时效影响的最新数据。 NPP组件。这次会议是由中央结构材料研究所(Protemey)与国际原子能机构和JRC-EU合作组织的。在审查第九届会议上提出的最新数据时,作者认为,结构完整性问题的范式在现在,在(1)反应堆容器和堆芯内部的断裂力学和辐射硬化以及(2)热老化和退火效应方面,老化的工厂已经得到了合理的确立。但是,第一作者G. Saji认为,当前的低周疲劳方法仍无法防止和预测环境辅助裂纹,如RBMK工厂和各种蒸汽发生器的下导管中的IGSCC问题所证明的那样。腐蚀问题。此基本缺陷源于设计规范,该规范没有纳入以腐蚀电流为代表的电化学腐蚀机理的基本知识。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2009年第9期|1614-1627|共14页
  • 作者

    Genn Saji; Boris Timofeev;

  • 作者单位

    Ex-Secretariat of Nuclear Safety Commission, Japan;

    CRISM Prometey, Shpalernaja 49, St. Petersburg 193075, Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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