A new spectral plate element (SPE) is developed to analyze wave propagation in anisotropic laminated composite media. The element is based on the first-order laminated plate theory, which takes shear deformation into consideration. The element is formulated using the recently developed methodology of spectral finite element formulation based on the solution of a polynomial eigenvalue problem. By virtue of its frequency-wave number domain formulation, single element is sufficient to model large structures, where conventional finite element method will incur heavy cost of computation. The variation of the wave numbers with frequency is shown, which illustrates the inhomogeneous nature of the wave. The element is used to demonstrate the nature...
A spectral finite element for modeling of wave scattering in laminated composite beam with embedded ...
A spectrally formulated element that has three degrees of freedom (axial motion, transverse motion a...
In this paper, we present a spectral finite element model (SFEM) using an efficient and accurate lay...
A new spectral plate element (SPE) is developed to analyze wave propagation in anisotropic laminated...
A new spectrally formulated plate element is developed to study wave propagation in composite struct...
A three-dimensional spectral element method (SEM) was developed for analysis of Lamb wave propagatio...
This work presents the extension of an existing procedure for evaluating the waveguides and the disp...
This work presents the extension of an existing procedure for evaluating the waveguides and the disp...
Wave propagation in orthotropic layered composite media due to high frequency impact loading is stud...
In this paper a 2D wavelet-based spectral finite element (WSFE) is developed for a anisotropic lamin...
In this paper, a 2D wavelet-based spectral finite element (WSFE) is developed for a anisotropic lami...
A spectral finite element model (SFEM) for analysis of axial–flexural–shear coupled wave propagation...
This paper presents a newly developed wavelet spectral finite element (WFSE) model to analyze wave p...
A frequency domain spectral finite element formulation is presented for the wave propagation analysi...
A spectral finite element model (SFEM) is developed to study the effect of wave scattering and power...
A spectral finite element for modeling of wave scattering in laminated composite beam with embedded ...
A spectrally formulated element that has three degrees of freedom (axial motion, transverse motion a...
In this paper, we present a spectral finite element model (SFEM) using an efficient and accurate lay...
A new spectral plate element (SPE) is developed to analyze wave propagation in anisotropic laminated...
A new spectrally formulated plate element is developed to study wave propagation in composite struct...
A three-dimensional spectral element method (SEM) was developed for analysis of Lamb wave propagatio...
This work presents the extension of an existing procedure for evaluating the waveguides and the disp...
This work presents the extension of an existing procedure for evaluating the waveguides and the disp...
Wave propagation in orthotropic layered composite media due to high frequency impact loading is stud...
In this paper a 2D wavelet-based spectral finite element (WSFE) is developed for a anisotropic lamin...
In this paper, a 2D wavelet-based spectral finite element (WSFE) is developed for a anisotropic lami...
A spectral finite element model (SFEM) for analysis of axial–flexural–shear coupled wave propagation...
This paper presents a newly developed wavelet spectral finite element (WFSE) model to analyze wave p...
A frequency domain spectral finite element formulation is presented for the wave propagation analysi...
A spectral finite element model (SFEM) is developed to study the effect of wave scattering and power...
A spectral finite element for modeling of wave scattering in laminated composite beam with embedded ...
A spectrally formulated element that has three degrees of freedom (axial motion, transverse motion a...
In this paper, we present a spectral finite element model (SFEM) using an efficient and accurate lay...