The cross-sectional stiffness matrix is derived for a pre-twisted, moderately thick beam made of transversely isotropic materials and having rectangular cross sections. An asymptotically-exact methodology is used to model the anisotropic beam from 3-D elasticity, without any further assumptions. The beam is allowed to have large displacements and rotations, but small strain is assumed. The strain energy is computed making use of the beam constitutive law and kinematical relations derived with the inclusion of geometrical nonlinearities and an initial twist. The energy functional is minimized making use of the Variational Asymptotic Method (VAM), thereby reducing the cross section to a point on the beam reference line with appropriate proper...
This work investigates the capabilities of two different approaches for the analysis of thin-walled ...
AbstractIn this paper the dynamic analysis of 3-D beam elements restrained at their edges by the mos...
The paper presents a mechanical model for predicting the elastic response of beams with annular cros...
The cross-sectional stiffness matrix is derived for a pre-twisted, moderately thick beam made of tra...
The cross-sectional stiffness matrix is derived for a pre-twisted, moderately thick beam made of tra...
An asymptotically-exact methodology is presented for obtaining the cross-sectional stiffness matrix ...
An asymptotically-exact methodology is presented for obtaining the cross-sectional stiffness matrix ...
ational asymptotic method to split a three-dimensional nonlinear elasticity problem into a two-dimen...
AbstractThe variational–asymptotic method has been applied to develop an asymptotically correct mode...
In the analysis of isotropic and prismatic beams, the usual approach is to assume that the stress fi...
The variational-asymptotic method was recently applied to create a beam theory for a thin strip-beam...
Beam has historically found its broad applications. Nowadays, many engineering constructions still r...
International audienceThe modelling of ordinary beams and thin-walled beams is rigorously obtained f...
An efficient and accurate anisotropic closed-section beam theory has been developed for both thin- a...
Modeling of pre-twisted composite rotor blades is very complicated not only because of the geometric...
This work investigates the capabilities of two different approaches for the analysis of thin-walled ...
AbstractIn this paper the dynamic analysis of 3-D beam elements restrained at their edges by the mos...
The paper presents a mechanical model for predicting the elastic response of beams with annular cros...
The cross-sectional stiffness matrix is derived for a pre-twisted, moderately thick beam made of tra...
The cross-sectional stiffness matrix is derived for a pre-twisted, moderately thick beam made of tra...
An asymptotically-exact methodology is presented for obtaining the cross-sectional stiffness matrix ...
An asymptotically-exact methodology is presented for obtaining the cross-sectional stiffness matrix ...
ational asymptotic method to split a three-dimensional nonlinear elasticity problem into a two-dimen...
AbstractThe variational–asymptotic method has been applied to develop an asymptotically correct mode...
In the analysis of isotropic and prismatic beams, the usual approach is to assume that the stress fi...
The variational-asymptotic method was recently applied to create a beam theory for a thin strip-beam...
Beam has historically found its broad applications. Nowadays, many engineering constructions still r...
International audienceThe modelling of ordinary beams and thin-walled beams is rigorously obtained f...
An efficient and accurate anisotropic closed-section beam theory has been developed for both thin- a...
Modeling of pre-twisted composite rotor blades is very complicated not only because of the geometric...
This work investigates the capabilities of two different approaches for the analysis of thin-walled ...
AbstractIn this paper the dynamic analysis of 3-D beam elements restrained at their edges by the mos...
The paper presents a mechanical model for predicting the elastic response of beams with annular cros...