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Nuclear corrosion science and engineering

机译:核腐蚀科学与工程

摘要

Understanding corrosion mechanisms, the systems and materials they affect, and the methods necessary for accurately measuring their incidence is of critical importance to the nuclear industry for the safe, economic and competitive running of its plants. This book reviews the fundamentals of nuclear corrosion. Corrosion of nuclear materials, i.e. the interaction between these materials and their environments, is a major issue for plant safety as well as for operation and economic competitiveness. Understanding these corrosion mechanisms, the systems and materials they affect, and the methods to accurately measure their incidence is of critical importance to the nuclear industry. Combining assessment techniques and analytical models into this understanding allows operators to predict the service life of corrosion-affected nuclear plant materials, and to apply the most appropriate maintenance and mitigation options to ensure safe long term operation. This book critically reviews the fundamental corrosion mechanisms that affect nuclear power plants and facilities. Initial sections introduce the complex field of nuclear corrosion science, with detailed chapters on the different types of both aqueous and non aqueous corrosion mechanisms and the nuclear materials susceptible to attack from them. This is complemented by reviews of monitoring and control methodologies, as well as modelling and lifetime prediction approaches. Given that corrosion is an applied science, the final sections review corrosion issues across the range of current and next-generation nuclear reactors, and across such nuclear applications as fuel reprocessing facilities, radioactive waste storage and geological disposal systems. With its distinguished editor and international team of expert contributors, Nuclear corrosion science and engineering is an invaluable reference for nuclear metallurgists, materials scientists and engineers, as well as nuclear facility operators, regulators and consultants, and researchers and academics in this field.
机译:了解腐蚀机理,它们所影响的系统和材料,以及准确测量其发生率所必需的方法,对于核工业对其工厂的安全,经济和竞争性运营至关重要。这本书回顾了核腐蚀的基础。核材料的腐蚀,即这些材料与其环境之间的相互作用,是工厂安全以及运营和经济竞争力的主要问题。了解这些腐蚀机理,它们所影响的系统和材料以及准确测量其发生率的方法对核工业至关重要。将评估技术和分析模型相结合,可以使运营商预测受腐蚀的核电站材料的使用寿命,并应用最合适的维护和缓解措施来确保长期安全运行。本书严格审查了影响核电厂和设施的基本腐蚀机理。前几节介绍了核腐蚀科学的复杂领域,并详细介绍了水腐蚀和非水腐蚀机理的不同类型以及易受其腐蚀的核材料。此外,还对监视和控制方法以及建模和寿命预测方法进行了审查。鉴于腐蚀是一门应用科学,因此最后几节将回顾当前和下一代核反应堆范围以及燃料后处理设施,放射性废物存储和地质处置系统等核应用中的腐蚀问题。凭借其杰出的编辑和国际专家贡献团队,核腐蚀科学与工程是核冶金学家,材料科学家和工程师以及核设施运营者,监管者和顾问以及该领域的研究人员和学者的宝贵参考。

著录项

  • 作者

    Feron D;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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