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Radiation-induced coherency loss in a Cu–Co alloy
123
Citations
9
References
1968
Year
EngineeringElectron DiffractionObserved Critical SizeCoherent Spherical PrecipitateRadiation-induced Coherency LossMaterials EngineeringQuantum ScienceMaterials ScienceDislocation LoopPhysicsAtomic PhysicsPlasma InstabilityMicrostructureDislocation InteractionApplied PhysicsCondensed Matter PhysicsAlloy PhaseCoherent ProcessCritical Phenomenon
Abstract It is shown that there is a size below which a coherent spherical precipitate cannot maintain a dislocation loop at its interface. There is also a size above which the incoherent (i.e. dislocated) state is stable with respect to the coherent state. Experiments in the electron microscope show that there is indeed a size above which a transition to incoherency can occur but that the observed critical size is bigger than that predicted theoretically. Reasons for this discrepancy are considered.
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