AbstractIn this paper, an analytical method is presented to investigate the nonlinear buckling and expansion behaviors of local delaminations near the surface of functionally graded laminated piezoelectric composite shells subjected to the thermal, electrical and mechanical loads, where the mid-plane nonlinear geometrical relation of delaminations is considered. In examples, the effects of thermal loading, electric field strength, the stacking patterns of functionally graded laminated piezoelectric composite shells and the patterns of delaminations on the critical axial loading of locally delaminated buckling are described and discussed. Finally, the possible growth directions of local buckling for delaminated sub-shells are described by ca...
A geometric nonlinear finite element formulation for deformable piezothermoelastic composite laminat...
AbstractA geometrically nonlinear analysis of functionally graded shells is presented. The two-const...
none3siDOI volume: 10.15651/978-88-938-5079-7Following the efforts of material scientists to obtain ...
AbstractThis paper presents a nonlinear analysis model of fatigue delamination growth for piezoelect...
AbstractA postbuckling analysis is presented for a simply supported, shear deformable functionally g...
AbstractThis article deals with the finite element modeling and analysis of functionally graded (FG)...
The delamination growth may occur in piezoelectric laminated shell with delamination under a combi...
The buckling analysis of a solid circular functionally graded piezoelectric plate subjected to the u...
AbstractWithin a framework of the three-dimensional (3D) piezoelectricity, we present asymptotic for...
ABSTRACT: An investigation is carried out to understand the non-linear thermal buckling behaviour of...
AbstractThis paper presents a nonlinear analysis model of fatigue delamination growth for piezoelect...
A solving method is applied to conduct research on the non-linear thermal buckling behavior of local...
Following the efforts of material scientists to obtain materials with very high thermal resistance, ...
Following the efforts of material scientists to obtain materials with very high thermal resistance, ...
In the present paper, buckling problems of constructions with single delamination are examined. Stru...
A geometric nonlinear finite element formulation for deformable piezothermoelastic composite laminat...
AbstractA geometrically nonlinear analysis of functionally graded shells is presented. The two-const...
none3siDOI volume: 10.15651/978-88-938-5079-7Following the efforts of material scientists to obtain ...
AbstractThis paper presents a nonlinear analysis model of fatigue delamination growth for piezoelect...
AbstractA postbuckling analysis is presented for a simply supported, shear deformable functionally g...
AbstractThis article deals with the finite element modeling and analysis of functionally graded (FG)...
The delamination growth may occur in piezoelectric laminated shell with delamination under a combi...
The buckling analysis of a solid circular functionally graded piezoelectric plate subjected to the u...
AbstractWithin a framework of the three-dimensional (3D) piezoelectricity, we present asymptotic for...
ABSTRACT: An investigation is carried out to understand the non-linear thermal buckling behaviour of...
AbstractThis paper presents a nonlinear analysis model of fatigue delamination growth for piezoelect...
A solving method is applied to conduct research on the non-linear thermal buckling behavior of local...
Following the efforts of material scientists to obtain materials with very high thermal resistance, ...
Following the efforts of material scientists to obtain materials with very high thermal resistance, ...
In the present paper, buckling problems of constructions with single delamination are examined. Stru...
A geometric nonlinear finite element formulation for deformable piezothermoelastic composite laminat...
AbstractA geometrically nonlinear analysis of functionally graded shells is presented. The two-const...
none3siDOI volume: 10.15651/978-88-938-5079-7Following the efforts of material scientists to obtain ...