Published January 2005 | Version v1
Journal article

Research and service experience with environmentally assisted cracking of low-alloy steel

  • 1. Electric Power Reasearch Inst., Palo Alto, CA (United States)
  • 2. Paul Scherrer Inst. (Switzerland)

Description

Environmentally assisted cracking (EAC) of carbon and low-alloy steels has been identified as a possible degradation mechanism for pressure vessels and piping in nuclear power plants. Selected aspects of research and service experience with cracking of these materials in high-temperature water are reviewed, with special emphasis on the primary pressure boundary in boiling water reactors. The main factors controlling EAC susceptibility under reactor conditions are discussed with regard to both crack initiation and crack growth. The adequacy and conservatism of the relevant engineering criteria for component design and disposition of detected or postulated flaws are evaluated in the context of recent research results, e.g., on the effects of so-called ''ripple loading'' or of water chemistry transients. Finally, the relevant operating experience over the last 30 years is briefly summarized and compared with the background knowledge which has been accumulated in more recent laboratory experiments. Some of the insights gained in this work may also be of value in improving understanding and prediction of the EAC behavior of carbon and low-alloy steels in certain fossil plant components, if appropriate allowances are made for differences in temperature and water chemistry. (orig.)

Additional details

Publishing Information

Journal Title
Power Plant Chemistry
Journal Volume
7
Journal Issue
1
Journal Page Range
p. 4-15
ISSN
1438-5325