Mathematical modelling, for the stress analysis of symmetric composite end notch flexure (ENF) specimen, has been presented using classical beam theory, first, second, and third order shear deformation beam theories to determine the strain energy release rate (SERR) for symmetric composites under mode II interlaminar fracture. In the present formulation, appropriate matching conditions have been applied at the crack tip and these matching conditions at the crack tip have been derived by enforcing the displacement continuity at the crack tip in conjunction with the variational equation. Compliance method has been used to calculate the SERR. Beam models under plane stress and plane strain conditions agree with each other with good performance...
In the present paper five beam models are presented to reproduce the experimental response of the En...
This paper focuses on the effects of transverse shear and root rotations in both symmetric and asymm...
Graduation date: 1984Three approaches for evaluating mode I interlaminar strain energy\ud release ra...
Mathematical modelling, for the stress analysis of symmetric composite end notch flexure (ENF) speci...
Abstract: Mathematical formulation for the stress analysis of symmetric multidirectional end notch f...
Mathematical models, for the stress analyses of unidirectional end notch flexure and end notch canti...
Mathematical models, for the stress analysis of symmetric multidirectional double cantilever beam (D...
Mathematical models, for the stress analysis of unidirectional $(0 ^o)$ fiber-reinforced laminated c...
Mathematical formulation for the analysis of symmetric multidirectional double cantilever beam (DCB)...
This paper deals with the correction of mode II strain energy release rate, G(II), of composite lami...
AbstractIn this paper, the mixed-mode II/III version of the prestressed end-notched flexure fracture...
This paper deals with two-dimensional Finite Element Analysis of the End Notched Flexure (ENF) speci...
Abstract- Fiber reinforced composite laminate have tremendous potential in weight critical applicati...
The end-notched flexure (ENF) specimen has often been employed to characterise the mode II fracture ...
This paper presents a new Cohesive Beam Model (CBM) for the mode II interlaminar fracture End-Notche...
In the present paper five beam models are presented to reproduce the experimental response of the En...
This paper focuses on the effects of transverse shear and root rotations in both symmetric and asymm...
Graduation date: 1984Three approaches for evaluating mode I interlaminar strain energy\ud release ra...
Mathematical modelling, for the stress analysis of symmetric composite end notch flexure (ENF) speci...
Abstract: Mathematical formulation for the stress analysis of symmetric multidirectional end notch f...
Mathematical models, for the stress analyses of unidirectional end notch flexure and end notch canti...
Mathematical models, for the stress analysis of symmetric multidirectional double cantilever beam (D...
Mathematical models, for the stress analysis of unidirectional $(0 ^o)$ fiber-reinforced laminated c...
Mathematical formulation for the analysis of symmetric multidirectional double cantilever beam (DCB)...
This paper deals with the correction of mode II strain energy release rate, G(II), of composite lami...
AbstractIn this paper, the mixed-mode II/III version of the prestressed end-notched flexure fracture...
This paper deals with two-dimensional Finite Element Analysis of the End Notched Flexure (ENF) speci...
Abstract- Fiber reinforced composite laminate have tremendous potential in weight critical applicati...
The end-notched flexure (ENF) specimen has often been employed to characterise the mode II fracture ...
This paper presents a new Cohesive Beam Model (CBM) for the mode II interlaminar fracture End-Notche...
In the present paper five beam models are presented to reproduce the experimental response of the En...
This paper focuses on the effects of transverse shear and root rotations in both symmetric and asymm...
Graduation date: 1984Three approaches for evaluating mode I interlaminar strain energy\ud release ra...