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Transient Thermoelectromechanical Response of a Piezoelectric Strip with Two Parallel Cracks of Different Lengths
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Citations
22
References
2012
Year
EngineeringPiezoelectric StripMechanical EngineeringLaplace TransformPiezoelectric Material StripMechanicsThermodynamicsParallel CracksPiezoelectric MaterialThermomechanical AnalysisElectrical EngineeringSolid MechanicsPiezoelectricityHeat TransferPiezoelectric NanogeneratorsNumerical MethodThermoelectric MaterialCrack FormationStructural MechanicsDynamic Crack PropagationThermal EngineeringMechanics Of MaterialsTransient Thermoelectromechanical ResponseElectrical Insulation
This work is concerned with the thermoelectromechanical fracture behavior of two parallel cracks of different lengths in a piezoelectric material strip under thermal shock loading. The crack faces are supposed to be insulated thermally and electrically. By using both the Laplace transform and the Fourier transform, the thermal and electromechanical problems are reduced to two systems of singular integral equations, respectively, which are solved numerically. A numerical method is employed to obtain the time dependent solutions by way of a Laplace inversion technique. The intensity factors versus time for various geometric parameters are calculated and presented in graphical forms. Temperature change, the stress and electric displacement distributions in a transient state are also included.
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