Published 1988 | Version v1
Report Open

Advances in crack-arrest technology for reactor pressure vessels

Description

The Heavy-Section Steel Technology (HSST) Program at the Oak Ridge National Laboratory (ORNL) under the sponsorship of the US Nuclear Regulatory Commission is continuing to improve the understanding of conditions that govern the initiation, rapid propagation, arrest, and ductile tearing of cracks in reactor pressure vessel (RPV) steels. This paper describes recent advances in a coordinated effort being conducted under the HSST Program by ORNL and several subcontracting groups to develop the crack-arrest data base and the analytical tools required to construct inelastic dynamic fracture models for RPV steels. Large-scale tests are being carried out to generate crack-arrest toughness data at temperatures approaching and above the onset of Charpy upper-shelf behavior. Small- and intermediate-size specimens subjected to static and dynamic loading are being developed and tested to provide additional fracture data for RPV steels. Viscoplastic effects are being included in dynamic fracture models and computer programs and their utility validated through analyses of data from carefully controlled experiments. Recent studies are described that examine convergence problems associated with energy-based fracture parameters in viscoplastic-dynamic fracture applications. Alternative techniques that have potential for achieving convergent solutions for fracture parameters in the context of viscoplastic-dynamic models are discussed. 46 refs., 15 figs., 3 tabs

Availability note (English)

MF available from INIS under the Report Number; Available from NTIS, PC A04/MF A01; 1 as DE89003115.

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Additional details

Publishing Information

Imprint Pagination
51 p.
Report number
CONF-8810155--14

Conference

Title
16. water reactor safety information meeting.
Dates
24-27 Oct 1988.
Place
Gaithersburg, MD (USA).

Optional Information

Notes
Portions of this document are illegible in microfiche products.