Published December 2000 | Version v1
Journal article

Damage mechanisms and fracture toughness of GlidCop[reg] CuAl25 IG0 copper alloy

Description

Crack nucleation and growth behaviour are important parameters in deciding about the applicability of the dispersion strengthened copper alloy CuAl25 in components such as the first wall and divertor in ITER. The effective strain to fracture of notched tensile specimens decreased with increasing stress state triaxiality and with increasing temperature at constant constraint level following the Rice and Tracey model for void growth. In three point bend tests, the strain for stable crack initiation decreased significantly with increasing temperature. The CuAl25 alloy failed by a ductile microvoid mechanism where extensive void nucleation occurred at very low strains at grain boundaries with increasing stress state triaxiality. At elevated temperatures the fracture surface morphology changed from microvoid to intergranular fracture in three-point bend tests

Additional details

Identifiers

PII
S0022311500002014;

Publishing Information

Journal Title
Journal of Nuclear Materials
Journal Volume
283-287
Journal Issue
1
Journal Page Range
p. 1028-1032
ISSN
0022-3115
CODEN
JNUMAM

Optional Information

Copyright
Copyright (c) 2000 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.