Journal of Applied Physics · 1998 · 63 citations · 6 references
Matrix DislocationsEngineeringSevere Plastic DeformationMechanical EngineeringNonlinear AcousticWork HardeningAcoustic NonlinearityAcoustic Nonlinearity ParametersMechanicsMicrostructure-strength RelationshipSound PropagationMaterials SciencePhysicsNonlinear Acoustic ResponseSolid MechanicsInverse ProblemsMicrostructureDislocation InteractionDynamic Constitutive BehaviorApplied PhysicsMechanics Of Materials
An analytical model is presented for the effects on the acoustic nonlinearity of the interaction of matrix dislocations with precipitate coherency strains in metallic alloys. The acoustic nonlinearity parameters are shown to depend linearly on the dislocation density, volume fraction of precipitates and precipitate-matrix misfit parameters, and on the fourth power of the dislocation loop length. The model predicts changes in the acoustic nonlinearity parameter associated with the growth of precipitates during the artificial aging of aluminum alloy 2024 that are in good agreement with experimental measurements reported in the literature.
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A. Cemal Eringen, P. R. Paslay · Journal of Applied Mechanics · 1968 · 916 citations
Anharmonicity in Noble Metals; Higher Order Elastic Constants
Yosio Hiki, A. V. Granato · Physical Review · 1966 · 378 citations