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Size-dependent vibration analysis of a three-layered porous rectangular nano plate with piezo-electromagnetic face sheets subjected to pre loads based on SSDT
54
Citations
67
References
2018
Year
EngineeringStructural DynamicsMechanical EngineeringPorosity CoefficientNonlocal TheoryStructural EngineeringVibrationsMechanicsPiezoelectric MaterialSize-dependent Vibration AnalysisSmart StructureStructural VibrationMaterials ScienceMechanical DesignPorous Rectangular PlatePiezo-electromagnetic Face SheetsActive Vibration ControlPiezoelectricityMicrofabricationCivil EngineeringMechanical SystemsStructural MechanicsVibration Control
In the present research vibration of a porous rectangular plate which is located between two piezo-electromagnetic layers based on two variables sinusoidal shear deformation plate theory and according to nonlocal theory is investigated. The plate is resting on Winkler–Pasternak foundation and was subjected to pre loads. The motion equations have been obtained using Hamilton principle and are solved using analytical Navier's solution method. The effects of porosity coefficient, pores distribution, nonlocal parameter, pre load values, foundation constants and geometric size of the plate have been discussed in details. The results can be used to design more efficient sensors and actuators.
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