A coupled geometrically nonlinear efficient zigzag theory is presented for electrothermomechanical analysis of hybrid piezoelectric plates. The geometric nonlinearity is included in Von Karman sense. The thermal and potential fields are approximated as piecewise linear across sublayers. The deflection accounts for the transverse normal strain due to thermal and electric fields. The inplane displacements are considered to have layerwise variations, but are expressed in terms of only five primary displacement variables, independent of the number of layers. The coupled nonlinear equations of equilibrium and the boundary conditions are derived from a variational principle. The nonlinear theory is used to obtain the initial buckling response of ...
An efficient new coupled zigzag theory is developed for dynamics of piezoelectric composite and sand...
A three dimensional exact piezothermoelasticity solution is presented for buckling of simply-support...
A new coupled consistent third-order theory is presented for static thermoelectromechanical response...
A coupled geometrically nonlinear efficient zigzag theory is presented for electrothermomechanical a...
A new efficient electromechanically coupled geometrically nonlinear (of von Karman type) zigzag theo...
A coupled zigzag theory for hybrid piezoelectric plates, recently developed by the first author, is ...
A coupled zigzag theory for hybrid piezoelectric plates, recently developed by the first author, is ...
An efficient coupled zigzag theory is presented for hybrid piezoelectric plates under thermoelectrom...
A recently developed improved third order theory (ITOT) for angle-ply hybrid piezoelectric plates in...
A recently developed improved third order theory (ITOT) for angle-ply hybrid piezoelectric plates in...
An efficient coupled zigzag theory is developed for electrothermal stress analysis of hybrid piezoel...
A geometric nonlinear finite element formulation for deformable piezothermoelastic composite laminat...
A benchmark three-dimensional (3D) exact piezothermoelasticity solution is presented for free vibrat...
A benchmark three-dimensional (3D) exact piezothermoelasticity solution is presented for free vibrat...
A new one-dimensional beam finite element is developed for hybrid piezoelectric beams under thermal ...
An efficient new coupled zigzag theory is developed for dynamics of piezoelectric composite and sand...
A three dimensional exact piezothermoelasticity solution is presented for buckling of simply-support...
A new coupled consistent third-order theory is presented for static thermoelectromechanical response...
A coupled geometrically nonlinear efficient zigzag theory is presented for electrothermomechanical a...
A new efficient electromechanically coupled geometrically nonlinear (of von Karman type) zigzag theo...
A coupled zigzag theory for hybrid piezoelectric plates, recently developed by the first author, is ...
A coupled zigzag theory for hybrid piezoelectric plates, recently developed by the first author, is ...
An efficient coupled zigzag theory is presented for hybrid piezoelectric plates under thermoelectrom...
A recently developed improved third order theory (ITOT) for angle-ply hybrid piezoelectric plates in...
A recently developed improved third order theory (ITOT) for angle-ply hybrid piezoelectric plates in...
An efficient coupled zigzag theory is developed for electrothermal stress analysis of hybrid piezoel...
A geometric nonlinear finite element formulation for deformable piezothermoelastic composite laminat...
A benchmark three-dimensional (3D) exact piezothermoelasticity solution is presented for free vibrat...
A benchmark three-dimensional (3D) exact piezothermoelasticity solution is presented for free vibrat...
A new one-dimensional beam finite element is developed for hybrid piezoelectric beams under thermal ...
An efficient new coupled zigzag theory is developed for dynamics of piezoelectric composite and sand...
A three dimensional exact piezothermoelasticity solution is presented for buckling of simply-support...
A new coupled consistent third-order theory is presented for static thermoelectromechanical response...