A higher-order refined model with seven degrees of freedom per node is presented in this paper for the free vibration analysis of composite and sandwich arches. The strain field is modeled through cubic axial, cubic transverse shear and linear transverse normal strain components. As the cross-sectional warping is accurately modeled by this theory, it does not require any shear correction factor. The stress-strain relationship is derived from an orthotropic lamina in a three-dimensional state of stress. The proposed higher-order formulation is validated, in this first part, through arches with various curvatures, aspect ratios, boundary conditions and materials
A new one-dimensional Extended High order Sandwich Panel Theory (EHSAPT) for curved panels is presen...
A higher-order refined model with seven degrees of freedom per node and cubic axial, quadratic trans...
Higher-order shear-deformable refined theories, based on isoparametric elements, are adopted for tra...
A higher-order mathematical formulation with applications is presented in this paper for the free vi...
none3noA higher-order mathematical formulation with applications is presented in this paper for the ...
The frequency spectra of the higher-order model, for laminated arches, are identified through a nove...
The frequency spectra of the higher-order model, for laminated arches, are identified through a nove...
A higher order refined model with isoparametric elements is proposed to study the transient dynamic ...
A higher order refined model with isoparametric elements is proposed to study the transient dynamic ...
A higher-order refined model with seven degrees of freedom per node is presented in this paper for t...
Three higher order refined displacement models are proposed for the free vibration analysis of sandw...
A refined higher-order shear deformation theory has been developed for large amplitude, in the sense...
This paper presents free vibration of composite beams under axial load using a four-unknown shear an...
The frequency spectra of the higher-order model, for laminated arches, are identified through a nove...
A new one-dimensional Extended High order Sandwich Panel Theory (EHSAPT) for curved panels is presen...
A new one-dimensional Extended High order Sandwich Panel Theory (EHSAPT) for curved panels is presen...
A higher-order refined model with seven degrees of freedom per node and cubic axial, quadratic trans...
Higher-order shear-deformable refined theories, based on isoparametric elements, are adopted for tra...
A higher-order mathematical formulation with applications is presented in this paper for the free vi...
none3noA higher-order mathematical formulation with applications is presented in this paper for the ...
The frequency spectra of the higher-order model, for laminated arches, are identified through a nove...
The frequency spectra of the higher-order model, for laminated arches, are identified through a nove...
A higher order refined model with isoparametric elements is proposed to study the transient dynamic ...
A higher order refined model with isoparametric elements is proposed to study the transient dynamic ...
A higher-order refined model with seven degrees of freedom per node is presented in this paper for t...
Three higher order refined displacement models are proposed for the free vibration analysis of sandw...
A refined higher-order shear deformation theory has been developed for large amplitude, in the sense...
This paper presents free vibration of composite beams under axial load using a four-unknown shear an...
The frequency spectra of the higher-order model, for laminated arches, are identified through a nove...
A new one-dimensional Extended High order Sandwich Panel Theory (EHSAPT) for curved panels is presen...
A new one-dimensional Extended High order Sandwich Panel Theory (EHSAPT) for curved panels is presen...
A higher-order refined model with seven degrees of freedom per node and cubic axial, quadratic trans...
Higher-order shear-deformable refined theories, based on isoparametric elements, are adopted for tra...