For nonconservative mechanical systems, classical variational principles do not hold true; hence the principle of incremental virtual work is usually taken as a convenient foundation for finite element solution methods [2,8,9]. Recent results on the so-called ‘inverse problem’ of calculus of variations, however, lead to ‘extended’ variational formulations, which can be provided even for nonconservative systems. In the present paper, this approach is used for the particular case of a nonlinear beam subjected to a co-planar follower static loading. Suitable finite element models are deduced from the ‘extended’ variational principle, and their numerical performance is assessed by means of some meaningful examples
In this communication, we provide a consistent variational formulation for the static Levinson beam ...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...
This paper presents the variational bases for the non-linear force-based beam elements. The element ...
The application of variational formulations for the rigid-plastic dynamic analysis problem is still ...
The application of variational formulations for the rigid-plastic dynamic analysis problem is still ...
The application of variational formulations for the rigid-plastic dynamic analysis problem is still ...
This paper illustrates a new modeling approach for planar linear elastic beams. Referring to existin...
For non-conservative mechanical systems classical variational principles do not hold true; however, ...
Using the Variational Iteration Method (VIM) the 3D static deflection problem of composite beams sub...
summary:This paper deals with a nonlinear beam model which was published by D. Y. Gao in 1996. It is...
The concept of Beam theory is extensively studied in the fields of computational and structural mech...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...
In this communication, we provide a consistent variational formulation for the static Levinson beam ...
In this communication, we provide a consistent variational formulation for the static Levinson beam ...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...
This paper presents the variational bases for the non-linear force-based beam elements. The element ...
The application of variational formulations for the rigid-plastic dynamic analysis problem is still ...
The application of variational formulations for the rigid-plastic dynamic analysis problem is still ...
The application of variational formulations for the rigid-plastic dynamic analysis problem is still ...
This paper illustrates a new modeling approach for planar linear elastic beams. Referring to existin...
For non-conservative mechanical systems classical variational principles do not hold true; however, ...
Using the Variational Iteration Method (VIM) the 3D static deflection problem of composite beams sub...
summary:This paper deals with a nonlinear beam model which was published by D. Y. Gao in 1996. It is...
The concept of Beam theory is extensively studied in the fields of computational and structural mech...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...
In this communication, we provide a consistent variational formulation for the static Levinson beam ...
In this communication, we provide a consistent variational formulation for the static Levinson beam ...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...
International audienceWe present an extension of a discrete, geometrically exact beam formulation or...