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Dynamic properties of flexural beams using a nonlocal elasticity model
423
Citations
15
References
2006
Year
EngineeringMicromechanicsMechanical EngineeringStructural ApplicationBeam StructuresStructural EngineeringMicro-electromechanical SystemMechanicsNonlocal Elasticity ModelStructural DynamicMaterial NonlinearitiesNanomechanicsClassic Elasticity TheoryNonlinear ElasticityNonlocal ElasticitySolid MechanicsMicrofabricationApplied PhysicsNano Electro Mechanical SystemStructural AnalysisStructural MechanicsVibration ControlMechanics Of Materials
In this paper, a nonlocal Bernoulli-Euler beam model is established based on the theory of nonlocal elasticity. Frequency equations and modal shape functions of beam structures with some typical boundary conditions are derived based on the model. The corresponding dynamic properties are presented and discussed in detail, which are shown to be very different from those predicted by classic elasticity theory when nonlocal effects are significant. The results can be applied to modeling and characterization of size-dependent mechanical properties of micro- or nanoelectromechanical system (MEMS or NEMS) devices.
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