Beams are among the most commonly used structural members that are encountered in virtually all systems of structural design at various scales. Mathematical models used to determine the response of beams under external loads are deduced from the three-dimensional elasticity theory through a series of assumptions concerning the kinematics of deformation and constitutive behavior. The kinematic assumptions exploit the fact that such structures do not experience significant trans- verse normal and shear strains and stresses. For example, the solution of the three- dimensional elasticity problem associated with a straight beam is reformulated as a one-dimensional problem in terms of displacements whose form is presumed on the basis of an educa...
The nonlinear size-dependent dynamics of a geometrically imperfect Timoshenko microbeam subject to a...
Three generalizations of the Timoshenko beam model according to the linear theory of micropolar elas...
The static stability of thin-walled composite beams, considering shear deformation and geometrical n...
Nonlinear finite element models of functionally graded beams with power-law variation of material, a...
The concept of Beam theory is extensively studied in the fields of computational and structural mech...
Exact solutions of buckling configurations and vibration response of post-buckled configurations of ...
This study is concerned with the development of simple and accurate alternative finite element model...
The different assumptions and corresponding theories of transverse vibrations of beams are presented...
A fully nonlinear theory of a three-dimensional thin-walled beam, in arbitrary rectangular coordina...
In this study, a new geometrically exact nonlinear model is developed for accurate analysis of buckl...
International audienceThe non-linear and linearized equations are derived for the in-plane stretchin...
Beam is a horizontal structure element which can withstand the load by resisting the bending which u...
In this study, nonlinear vibrations of curved Euler-Bernoulli beams carrying arbitrarily placed con...
This project tackles the challenge of designing an elastic structure such that a desired deflection ...
The geometrically nonlinear size-dependent behaviour of a Timoshenko microbeam is examined numerical...
The nonlinear size-dependent dynamics of a geometrically imperfect Timoshenko microbeam subject to a...
Three generalizations of the Timoshenko beam model according to the linear theory of micropolar elas...
The static stability of thin-walled composite beams, considering shear deformation and geometrical n...
Nonlinear finite element models of functionally graded beams with power-law variation of material, a...
The concept of Beam theory is extensively studied in the fields of computational and structural mech...
Exact solutions of buckling configurations and vibration response of post-buckled configurations of ...
This study is concerned with the development of simple and accurate alternative finite element model...
The different assumptions and corresponding theories of transverse vibrations of beams are presented...
A fully nonlinear theory of a three-dimensional thin-walled beam, in arbitrary rectangular coordina...
In this study, a new geometrically exact nonlinear model is developed for accurate analysis of buckl...
International audienceThe non-linear and linearized equations are derived for the in-plane stretchin...
Beam is a horizontal structure element which can withstand the load by resisting the bending which u...
In this study, nonlinear vibrations of curved Euler-Bernoulli beams carrying arbitrarily placed con...
This project tackles the challenge of designing an elastic structure such that a desired deflection ...
The geometrically nonlinear size-dependent behaviour of a Timoshenko microbeam is examined numerical...
The nonlinear size-dependent dynamics of a geometrically imperfect Timoshenko microbeam subject to a...
Three generalizations of the Timoshenko beam model according to the linear theory of micropolar elas...
The static stability of thin-walled composite beams, considering shear deformation and geometrical n...