This work deals with the linearized buckling analysis of laminated plates and shells. A variable-kinematics approach with hierarchical capabilities is considered to establish the accuracy of a large variety of classical and advanced plate/shell theories in order to evaluate buckling loads. So-called equivalent-single-layer as well as layerwise-variable descriptions are implemented. Interlaminar continuity of transverse shear and normal stresses are a priori fulfilled by referring to Reissner's mixed variational theorem. Stability equations are derived in compact form by referring to Carrera's unified formulation for the most general case of doubly curved shells. The eigenvalue problem is solved in the case of closed-form solutions...
This paper proposes a multi-layer formulation for the nonlinear analysis of laminated shells with an...
In this work, refinements of classical theories are proposed in order to analyze isotropic, orthotro...
The buckling analysis of functionally graded materials (FGM) axisymmetric plate-shell type structure...
This article is devoted to the linearized buckling analysis of laminated composite plates subjected ...
Linearized buckling analysis of laminated plates subjected to combined bi-axial/shear loading is des...
This paper proposes variable kinematic, mixed theories for laminated plates built via the asymptotic...
AbstractThe stability pattern of shells is governed by a set of nonlinear partial differential equat...
This paper presents an advanced approximate technique for the vibration and buckling analysis of var...
Accurate free-vibrations and linearized buckling analysis of anisotropic laminated plates with diffe...
Variable-stiffness panels have previously shown enhanced buckling performance compared to constant-s...
In the present work, a shell finite element with a variable kinematic field based on a new zig-zag p...
The increasing use of composite materials for lightweight structural applications and the extended t...
Research has shown that panel buckling loads improve significantly by allowing the stiff-ness proper...
This paper presents a unified Lévy-type solution procedure for the buckling analysis of both thin an...
Closed-form solutions of free-vibration problems of simply supported multilayered shells made of Fun...
This paper proposes a multi-layer formulation for the nonlinear analysis of laminated shells with an...
In this work, refinements of classical theories are proposed in order to analyze isotropic, orthotro...
The buckling analysis of functionally graded materials (FGM) axisymmetric plate-shell type structure...
This article is devoted to the linearized buckling analysis of laminated composite plates subjected ...
Linearized buckling analysis of laminated plates subjected to combined bi-axial/shear loading is des...
This paper proposes variable kinematic, mixed theories for laminated plates built via the asymptotic...
AbstractThe stability pattern of shells is governed by a set of nonlinear partial differential equat...
This paper presents an advanced approximate technique for the vibration and buckling analysis of var...
Accurate free-vibrations and linearized buckling analysis of anisotropic laminated plates with diffe...
Variable-stiffness panels have previously shown enhanced buckling performance compared to constant-s...
In the present work, a shell finite element with a variable kinematic field based on a new zig-zag p...
The increasing use of composite materials for lightweight structural applications and the extended t...
Research has shown that panel buckling loads improve significantly by allowing the stiff-ness proper...
This paper presents a unified Lévy-type solution procedure for the buckling analysis of both thin an...
Closed-form solutions of free-vibration problems of simply supported multilayered shells made of Fun...
This paper proposes a multi-layer formulation for the nonlinear analysis of laminated shells with an...
In this work, refinements of classical theories are proposed in order to analyze isotropic, orthotro...
The buckling analysis of functionally graded materials (FGM) axisymmetric plate-shell type structure...