A geometrically nonlinear model for general thin-walled open-section composite beams with arbitrary lay-ups under various types of loadings based on the classical lamination theory is presented. It accounts for all structural coupling coming from the material anisotropy and geometric nonlinearity. Nonlinear governing equations are derived and solved by means of an incremental Newton–Raphson method. The finite element model that accounts for the geometric nonlinearity in the von Kármán sense is developed to solve the problem. Numerical results are obtained for thin-walled composite Z-beam and I-beam to investigate effects of geometric nonlinearity, fiber orientation and warping restraint on the flexural–torsional response
This paper presents a flexural–torsional analysis of thin-walled composite box beams. A general anal...
This work intends to demonstrate the importance of geometrically nonlinear crosssectional analysis o...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A geometrically nonlinear model for general thin-walled open-section composite beams with arbitrary ...
A general geometrically nonlinear model for thin-walled composite space beams with arbitrary lay-ups...
Based on a seven-degree-of-freedom shear deformable beam model, a geometrical nonlinear analysis of ...
A general geometrically nonlinear model for thin-walled composite space beams with arbitrary lay-ups...
AbstractThe geometrical nonlinear effects caused by large displacements and rotations over the cross...
Abstract The use of thin-walled composite beams in Engineering has attracted great interest in recen...
The purpose of this paper is to present a finite element model for optimal design of composite lamin...
Com o apoio RAADRI.The purpose of this paper is to present a finite element model for optimal design...
In this paper a geometrically nonlinear model for studying the lateral global buckling problem of a ...
A geometrically non-linear theory for thin-walled composite beams is developed for both open and clo...
A general analytical model based on the first-order shear deformable beam theory applicable to thin-...
In this paper a geometrically nonlinear model for studying the lateral global buckling problem of a ...
This paper presents a flexural–torsional analysis of thin-walled composite box beams. A general anal...
This work intends to demonstrate the importance of geometrically nonlinear crosssectional analysis o...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...
A geometrically nonlinear model for general thin-walled open-section composite beams with arbitrary ...
A general geometrically nonlinear model for thin-walled composite space beams with arbitrary lay-ups...
Based on a seven-degree-of-freedom shear deformable beam model, a geometrical nonlinear analysis of ...
A general geometrically nonlinear model for thin-walled composite space beams with arbitrary lay-ups...
AbstractThe geometrical nonlinear effects caused by large displacements and rotations over the cross...
Abstract The use of thin-walled composite beams in Engineering has attracted great interest in recen...
The purpose of this paper is to present a finite element model for optimal design of composite lamin...
Com o apoio RAADRI.The purpose of this paper is to present a finite element model for optimal design...
In this paper a geometrically nonlinear model for studying the lateral global buckling problem of a ...
A geometrically non-linear theory for thin-walled composite beams is developed for both open and clo...
A general analytical model based on the first-order shear deformable beam theory applicable to thin-...
In this paper a geometrically nonlinear model for studying the lateral global buckling problem of a ...
This paper presents a flexural–torsional analysis of thin-walled composite box beams. A general anal...
This work intends to demonstrate the importance of geometrically nonlinear crosssectional analysis o...
A general analytical model based on shear-deformable beam theory has been developed to study the fle...