A new coupled consistent third-order theory (CTOT) is presented which, unlike the existing third-order theory (TOT), satisfies exactly the shear traction-free conditions at the top and bottom of a hybrid beam for any electrical boundary condition. The potential field is discretized layerwise as piecewise linear. The axial and transverse electric fields are considered. The deflection is approximated as uniform across the thickness and the longitudinal displacement is approximated as a third-order variation. The field equations and the boundary conditions are derived from the Hamilton’s principle. Analytical solutions are obtained for simply-supported beams for static and harmonic electromechanical load, and for natural frequencies. The theor...
Two-dimensional (2D) exact piezoelasticity and one-dimensional coupled zigzag theory solutions are p...
An efficient coupled zigzag theory is developed for electrothermal stress analysis of hybrid piezoel...
A unified formulation is presented for coupled efficient zigzag, third order, consistent third order...
A new coupled consistent third-order theory is presented for thermal load on hybrid piezoelectric be...
A new coupled consistent third-order theory is presented for static thermoelectromechanical response...
An efficient new coupled one-dimensional model is developed for the dynamics of piezoelectric compos...
An efficient one-dimensional model is developed for the statics of piezoelectric sandwich beams. Thi...
An efficient new coupled zigzag theory is developed for dynamics of piezoelectric composite and sand...
A recently developed coupled third-order zigzag theory for the statics of piezoelectric hybrid cross...
A new improved third order theory (ITOT) is presented for hybrid piezoelectric angle-ply flat panels...
A recently developed improved third order theory (ITOT) for angle-ply hybrid piezoelectric plates in...
An efficient coupled zigzag theory is presented for hybrid piezoelectric plates under thermoelectrom...
A new coupled efficient layerwise higher-order theory is presented for analysis of hybrid piezoelect...
A coupled zigzag theory for hybrid piezoelectric plates, recently developed by the first author, is ...
In this chapter, the accuracy of an efficient coupled one-dimensional zigzag theory for piezoelectri...
Two-dimensional (2D) exact piezoelasticity and one-dimensional coupled zigzag theory solutions are p...
An efficient coupled zigzag theory is developed for electrothermal stress analysis of hybrid piezoel...
A unified formulation is presented for coupled efficient zigzag, third order, consistent third order...
A new coupled consistent third-order theory is presented for thermal load on hybrid piezoelectric be...
A new coupled consistent third-order theory is presented for static thermoelectromechanical response...
An efficient new coupled one-dimensional model is developed for the dynamics of piezoelectric compos...
An efficient one-dimensional model is developed for the statics of piezoelectric sandwich beams. Thi...
An efficient new coupled zigzag theory is developed for dynamics of piezoelectric composite and sand...
A recently developed coupled third-order zigzag theory for the statics of piezoelectric hybrid cross...
A new improved third order theory (ITOT) is presented for hybrid piezoelectric angle-ply flat panels...
A recently developed improved third order theory (ITOT) for angle-ply hybrid piezoelectric plates in...
An efficient coupled zigzag theory is presented for hybrid piezoelectric plates under thermoelectrom...
A new coupled efficient layerwise higher-order theory is presented for analysis of hybrid piezoelect...
A coupled zigzag theory for hybrid piezoelectric plates, recently developed by the first author, is ...
In this chapter, the accuracy of an efficient coupled one-dimensional zigzag theory for piezoelectri...
Two-dimensional (2D) exact piezoelasticity and one-dimensional coupled zigzag theory solutions are p...
An efficient coupled zigzag theory is developed for electrothermal stress analysis of hybrid piezoel...
A unified formulation is presented for coupled efficient zigzag, third order, consistent third order...