Published 1979 | Version v1
Report Open

Techniques developed to evaluate the fracture toughness offast breeder reactor duct

Description

Large changes in strength and ductility of metals after irradiation are known to occur. The fracture toughness of irradiated metals, which is related to the combined strength and ductility of a material, may be significantly reduced and the potential for unstable crack extension increased. Therefore, the resistance of cladding and duct materials to fracture after exposure to fast neutron environments is of concern. Existing Type 316 stainless steel irradiated ducts are relatively thin and since this material retains substantial ductility, even after irradiation, the fracture behavior of the duct material cannot be analyzed by linear elastic fracture mechanics techniques. Instead, the multispecimen R-curve method and J-integral analysis were used to develop an experimental approach to evaluate the fracture toughness of thin breeder reactor duct materials irradiated at elevated temperatures. Alloy A-286 was chosen for these experiments because the alloy exhibits elastic/plastic behavior and the fracture toughness data of thicker (12 mm) specimens were available for comparison. Technical problems associated with specimen buckling and remote handling were treated in this work. The results are discussed in terms of thickness criterion for plane strain

Availability note (English)

MF available from INIS under the Report Number; Available from NTIS., PC A02/MF A01.

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Additional details

Additional titles

Augmented title (English)
Use of J-integral tests

Publishing Information

Imprint Pagination
19 p.
Report number
HEDL-SA--1775

Conference

Title
Symposium on calculation of phase diagrams and thermochemistry.
Dates
17 - 19 Sep 1979.
Place
Milwaukee, WI, USA.

Optional Information

Secondary number(s)
CONF-790910--4.