Bn. Singh et al., EFFECTS OF HEAT-TREATMENTS AND NEUTRON-IRRADIATION ON MICROSTRUCTURESAND PHYSICAL AND MECHANICAL-PROPERTIES OF COPPER-ALLOYS, Journal of nuclear materials, 249(1), 1997, pp. 1-16
Citations number
17
Categorie Soggetti
Nuclear Sciences & Tecnology","Mining & Mineral Processing","Material Science
Tensile specimens of Cu-Al2O3, CuCrZr and CuNiBe alloys were given dif
ferent heat treatments and then irradiated with fission neutrons at 25
0 degrees C to a dose level of similar or equal to 0.3 dpa. Both unirr
adiated and irradiated specimens were tensile tested at 250 degrees C.
The microstructure and electrical resistivity were determined in the
unirradiated as well as irradiated conditions. The post-deformation mi
crostructure and fracture surfaces were also investigated, The main ef
fect of the bonding thermal cycle heat treatment was a slight decrease
in the strength of CuCrZr and CuNiBe alloys. The strength of CuAl-25,
on the other hand, remained almost unaltered. The post-irradiation te
sts at 250 degrees C showed a severe loss of ductility in the case of
CuNiBe alloy. The irradiated CuAl-25 and CuCrZr specimens, on the othe
r hand, exhibited a reasonable amount of uniform elongation. The resul
ts are briefly discussed in terms of thermal and irradiation stability
of precipitates and particles and irradiation-induced segregation, pr
ecipitation and recovery of dislocation microstructure. (C) 1997 Elsev
ier Science B.V.