The paper presents a formulation of the geometrically exact three-dimensional beam theory where the shape functions of three-dimensional rotations are obtained from strains by the analytical solution of kinematic equations. In general it is very demanding to obtain rotations from known rotational strains. In the paper we limit our studies to the constant strain field along the element. The relation between the total three-dimensional rotations and the rotational strains is complicated even when a constant strain field is assumed. The analytical solution for the rotation matrix is for constant rotational strains expressed by the matrix exponential. Despite the analyticalrelationship between rotations and rotational strains, the governingequa...
This paper presents the equations for the implementation of rotational quaternions in the geometrica...
Consistent finite element formulations for beams made of anisotropic materials and taking into accou...
Consistent finite element formulations for beams made of anisotropic materials and taking into accou...
The paper presents a formulation of the geometrically exact three-dimensional beam theory where the ...
AbstractThe paper presents a formulation of the geometrically exact three-dimensional beam theory wh...
AbstractThe paper presents a formulation of the geometrically exact three-dimensional beam theory wh...
This paper presents the equations of the linearized geometrically exact three-dimensional beam theor...
A geometrically exact and completely consistent finite element theory for curved and twisted beams i...
The geometrically nonlinear formulation of three-dimensional (3D) curved beam elements with large ro...
A new finite element formulation of the `kinematically exact finite-strain beam theory' is presented...
article introduces a new finite element formulation of the three-dimensional `geometrically exact fi...
A finite element, large displacement formulation of static elastic-plastic analysis of slender arbit...
A simple matrix expression is obtained for the strain components of a beam in which the displacement...
In this thesis a theory for the geometrically nonlinear analysis of thin curved beam-type structures...
A displacement-based, novel curved beam element is proposed for efficient and reliable analysis of f...
This paper presents the equations for the implementation of rotational quaternions in the geometrica...
Consistent finite element formulations for beams made of anisotropic materials and taking into accou...
Consistent finite element formulations for beams made of anisotropic materials and taking into accou...
The paper presents a formulation of the geometrically exact three-dimensional beam theory where the ...
AbstractThe paper presents a formulation of the geometrically exact three-dimensional beam theory wh...
AbstractThe paper presents a formulation of the geometrically exact three-dimensional beam theory wh...
This paper presents the equations of the linearized geometrically exact three-dimensional beam theor...
A geometrically exact and completely consistent finite element theory for curved and twisted beams i...
The geometrically nonlinear formulation of three-dimensional (3D) curved beam elements with large ro...
A new finite element formulation of the `kinematically exact finite-strain beam theory' is presented...
article introduces a new finite element formulation of the three-dimensional `geometrically exact fi...
A finite element, large displacement formulation of static elastic-plastic analysis of slender arbit...
A simple matrix expression is obtained for the strain components of a beam in which the displacement...
In this thesis a theory for the geometrically nonlinear analysis of thin curved beam-type structures...
A displacement-based, novel curved beam element is proposed for efficient and reliable analysis of f...
This paper presents the equations for the implementation of rotational quaternions in the geometrica...
Consistent finite element formulations for beams made of anisotropic materials and taking into accou...
Consistent finite element formulations for beams made of anisotropic materials and taking into accou...