An analytical method for evaluating the natural frequencies of laminated composite and sandwich beams has been developed in this paper using higher-order mixed theory. The stiffness and mass matrices for the laminate are computed by evaluating the integrands explicitly. Each lamina of the laminate is assumed to be orthotropic and in a two-dimensional state of plane stress. Hamilton's principle has been employed to derive the equilibrium equations. Numerical experiments on laminated composite and sandwich beams of thin and thick sections are performed. The results obtained are compared with those of the first-order shear deformation theory and are validated by comparing them with the published results of analytical methods incorporating disp...
The goal of this effort is to develop shear-deformable finite elements which can be used to find the...
A finite element model based on a higher-order shear deformation theory is developed to study the fr...
This paper deals with an accurate, three-dimensional, higher order, mixed finite element (FE) modeli...
Analytical solution to the natural frequency analysis of composite and sandwich beams based on a hig...
Analytical formulations and solutions to the natural frequency analysis of simply supported composit...
A C<sup>0</sup> finite element formulation of the higher-order theory is used to determine the natur...
Abstract Vibrations of angle ply laminated beams are studied using the higher order theory and isopa...
Free vibration analyses of angle-ply laminated composite beams were investigated by the Gâteaux diff...
based on "nite element methods. In this investigation, analytical solutions for the free vibrat...
An exact analytical solution based on the propagator matrix method and a semianalytical solution bas...
Two new C0 assumed strain finite element formulations of Reddy's higher-order theory are used to det...
N2 - The free vibrations of laminated cross-ply composite beams are examined using a Clt;supgt;0lt;/...
N2 - The free vibrations of laminated cross-ply composite beams are examined using a Clt;supgt;0lt;/...
Three higher order refined displacement models are proposed for the free vibration analysis of sandw...
Recently developed shear deformation theory is used to analyze vibrations of laminated composite and...
The goal of this effort is to develop shear-deformable finite elements which can be used to find the...
A finite element model based on a higher-order shear deformation theory is developed to study the fr...
This paper deals with an accurate, three-dimensional, higher order, mixed finite element (FE) modeli...
Analytical solution to the natural frequency analysis of composite and sandwich beams based on a hig...
Analytical formulations and solutions to the natural frequency analysis of simply supported composit...
A C<sup>0</sup> finite element formulation of the higher-order theory is used to determine the natur...
Abstract Vibrations of angle ply laminated beams are studied using the higher order theory and isopa...
Free vibration analyses of angle-ply laminated composite beams were investigated by the Gâteaux diff...
based on "nite element methods. In this investigation, analytical solutions for the free vibrat...
An exact analytical solution based on the propagator matrix method and a semianalytical solution bas...
Two new C0 assumed strain finite element formulations of Reddy's higher-order theory are used to det...
N2 - The free vibrations of laminated cross-ply composite beams are examined using a Clt;supgt;0lt;/...
N2 - The free vibrations of laminated cross-ply composite beams are examined using a Clt;supgt;0lt;/...
Three higher order refined displacement models are proposed for the free vibration analysis of sandw...
Recently developed shear deformation theory is used to analyze vibrations of laminated composite and...
The goal of this effort is to develop shear-deformable finite elements which can be used to find the...
A finite element model based on a higher-order shear deformation theory is developed to study the fr...
This paper deals with an accurate, three-dimensional, higher order, mixed finite element (FE) modeli...