Interrelationships among grain boundaries, cavitation and dislocation structure in Cu-15 at .%Al fatigued at high temperatures
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[1] G. Gottstein,et al. Strain softening, grain boundary migration and dynamic recrystallization of Ni during high temperature low cycle fatigue , 1988 .
[2] J. Weertman,et al. Microstructural observations in the vicinity of cavitated grain boundaries in copper bicrystals fatigued at high temperatures , 1986 .
[3] N. Tang,et al. Cavity nucleation in creep , 1984 .
[4] R. Raj,et al. Effect of boundary structure on slip-induced cavitation in polycrystalline nickel , 1984 .
[5] Tadao Watanabe,et al. Intergranular fracture at migrating and sliding grain boundaries in an alpha iron - tin alloy , 1981 .
[6] U. Gösele,et al. A model of extrusions and intrusions in fatigued metals I. Point-defect production and the growth of extrusions , 1981 .
[7] J. Čadek,et al. High-temperature creep and grain-boundary behaviour in a Cu—10% Zn alloy , 1975 .
[8] S. Karashima,et al. Internal Stress and Dislocation Structure during Sigmoidal Transient Creep of a Copper–16 at.-% Aluminium Alloy , 1972 .
[9] A. Gittins. The Mechanism of Cavity Growth in Copper during High-Temperature Fatigue , 1968 .
[10] C. Laird,et al. Cyclic stress-strain response of F.C.C. metals and alloys—II Dislocation structures and mechanisms , 1967 .