A higher-order theory of laminated composites under in-plane loads is developed. The displacement field is expanded in terms of the thickness co-ordinate, satisfying the zero shear stress condition at the surfaces of the laminate. Using the principle of virtual displacement, the governing equations and boundary conditions are established. Numerical results for interlaminar stresses arising in the case of symmetric laminates under uniform extension have been obtained and are compared with similar results available in the literature
An analysis of the influence of fibre orientation on the interlaminar stresses near the free edge of...
An analysis of the influence of fibre orientation on the interlaminar stresses near the free edge of...
This paper describes a higher-order global–local theory for thermal/mechanical response of moderatel...
A higher-order theory of laminated composites under in-plane loads is developed. The displacement fi...
A higher-order theory of laminated composites under in-plane loads is developed. The displacement fi...
A higher-order theory of laminated composites under in-plane loads is developed. The displacement fi...
In this paper we examine the suitability of higher order shear deformation theory based on cubic inp...
In this paper we examine the suitability of higher order shear deformation theory based on cubic inp...
A C° continuous displacement finite element formulation of a higher-order theory for flexure of...
In this paper, a refined shear-deformation theory for flexure of thick symmetric angle-ply laminates...
A new higher order shear deformation theory of laminated composite plates is developed. The basic di...
A new higher order shear deformation theory of laminated composite plates is developed. The basic di...
A new higher order shear deformation theory of laminated composite plates is developed. The basic di...
This paper attempts to evaluate the transverse stresses that are generated within the interface betw...
In the present work, a zigzag model for symmetric laminated beam is developed. This model uses a sin...
An analysis of the influence of fibre orientation on the interlaminar stresses near the free edge of...
An analysis of the influence of fibre orientation on the interlaminar stresses near the free edge of...
This paper describes a higher-order global–local theory for thermal/mechanical response of moderatel...
A higher-order theory of laminated composites under in-plane loads is developed. The displacement fi...
A higher-order theory of laminated composites under in-plane loads is developed. The displacement fi...
A higher-order theory of laminated composites under in-plane loads is developed. The displacement fi...
In this paper we examine the suitability of higher order shear deformation theory based on cubic inp...
In this paper we examine the suitability of higher order shear deformation theory based on cubic inp...
A C° continuous displacement finite element formulation of a higher-order theory for flexure of...
In this paper, a refined shear-deformation theory for flexure of thick symmetric angle-ply laminates...
A new higher order shear deformation theory of laminated composite plates is developed. The basic di...
A new higher order shear deformation theory of laminated composite plates is developed. The basic di...
A new higher order shear deformation theory of laminated composite plates is developed. The basic di...
This paper attempts to evaluate the transverse stresses that are generated within the interface betw...
In the present work, a zigzag model for symmetric laminated beam is developed. This model uses a sin...
An analysis of the influence of fibre orientation on the interlaminar stresses near the free edge of...
An analysis of the influence of fibre orientation on the interlaminar stresses near the free edge of...
This paper describes a higher-order global–local theory for thermal/mechanical response of moderatel...