Published 1982 | Version v1
Journal article

Microstructural stability of fast reactor irradiated 10 to 12% Cr ferritic-martensitic stainless steels

  • 1. AERE Harwell, England

Description

The strength and microstructural stability of three 10 to 12% Cr ferritic-martensitic stainless steels have been characterized following fast reactor irradiation to damage levels of 30 displacements per atom (dpa) at temperatures in the range 380 to 6150C. Irradiation results in either increases or decreases in room temperature hardness depending on the irradiation temperature. These strength changes can be qualitatively rationalized in terms of the combined effects of irradiation-induced interstitial dislocation loop formation and recovery of the dislocation networks comprising the initial tempered martensite structures. Precipitate evolution in the irradiated steels is associated with the nonequilibrium segregation of the elements nickel, silicon, molybdenum, chromium and phosphorus, brought about by solute-point defect interactions. The principal irradiation-induced precipitates identified are M6X, intermetallic chi and sigma phases and also α' (Cr-rich ferrite). The implications of the observed microstructural changes on the selection of martensitic stainless steels for fast reactor wrapper applications are briefly considered

Additional details

Publishing Information

Journal Title
Am. Soc. Test. Mater., Spec. Tech. Publ.
Journal Issue
no.782
Series
Am. Soc. Test. Mater., Spec. Tech. Publ.
ISSN
0066-0558

Conference

Title
11. international symposium on effects of radiation on materials, American Society for Testing and Materials.
Dates
28-30 Jun 1982.
Place
Scottsdale, AZ (USA).

Optional Information

Secondary number(s)
CONF-820628--.