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Wave dispersion in gradient elastic solids and structures: A unified treatment
Authors:S Papargyri-Beskou  D Polyzos  DE Beskos
Institution:1. Department of Civil Engineering, Aristotle University of Thessaloniki, GR-54006 Thessaloniki, Greece;2. Department of Mechanical Engineering and Aeronautics, University of Patras, GR-26500 Patras, Greece;3. Institute of Chemical Engineering and High Temperature Chemical Processes – FORTH, GR-26500 Patras, Greece;4. Department of Civil Engineering, University of Patras, GR-26500 Patras, Greece;5. Office of Theoretical and Applied Mechanics, Academy of Athens, 4 Soranou Efessiou str., GR-11527 Athens, Greece
Abstract:Analytical wave propagation studies in gradient elastic solids and structures are presented. These solids and structures involve an infinite space, a simple axial bar, a Bernoulli–Euler flexural beam and a Kirchhoff flexural plate. In all cases wave dispersion is observed as a result of introducing microstructural effects into the classical elastic material behavior through a simple gradient elasticity theory involving both micro-elastic and micro-inertia characteristics. It is observed that the micro-elastic characteristics are not enough for resulting in realistic dispersion curves and that the micro-inertia characteristics are needed in addition for that purpose for all the cases of solids and structures considered here. It is further observed that there exist similarities between the shear and rotary inertia corrections in the governing equations of motion for bars, beams and plates and the additions of micro-elastic (gradient elastic) and micro-inertia terms in the classical elastic material behavior in order to have wave dispersion in the above structures.
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