The progress in advanced technology fields requires more and more sophisticated formulations to consider contact problems properly. In this paper an approach is proposed to deal with electric-mechanical contact within the framework of the Finite Element techniques. The electric-mechanical contact constitutive law is obtained considering the real microscopic shape of the contacting surfaces, the microscopic behaviour of force transmission and current flow. The contact element geometry is based on well known theoretical and experimental micro-mechanical laws, suitably adapted for the FEM formulation. The macroscopic stiffness matrix is calculated on the basis of the microscopic laws and it is continuously updated as a function of the changes ...
In this paper the formulation of an electric-mechanical beam-to-beam contact element is presented. B...
In this paper the formulation of an electric-mechanical beam-to-beam contact element is presented. B...
The contact element formulation presented considers microscopically mechanisms of force transmission...
The progress in advanced technology fields requires more and more sophisticated formulations to cons...
The progress in advanced technology fields requires more and more sophisticated formulations to cons...
The progress in advanced technology fields requires more and more sophisticated formulations to cons...
In this paper a formulation to deal with the Finite Element modelling of coupled electric-mechanical...
In this paper a model to deal with electric-mechanical contact problems in the framework of the FEM ...
In this paper a model to deal with electric-mechanical contact problems in the framework of the FEM ...
In this paper a model to deal with electric-mechanical contact problems in the framework of the FEM ...
In this paper a model to deal with electric-mechanical contact problems in the framework of the FEM ...
This work is devoted to the development of a new constitutive model for electric–mechanical contacts...
The solution of contact problems involves great numerical efforts to satisfy non-penetration conditi...
The solution of contact problems involves great numerical efforts to satisfy non-penetration conditi...
In this paper the formulation of an electric-mechanical beam-to-beam contact element is presented. B...
In this paper the formulation of an electric-mechanical beam-to-beam contact element is presented. B...
In this paper the formulation of an electric-mechanical beam-to-beam contact element is presented. B...
The contact element formulation presented considers microscopically mechanisms of force transmission...
The progress in advanced technology fields requires more and more sophisticated formulations to cons...
The progress in advanced technology fields requires more and more sophisticated formulations to cons...
The progress in advanced technology fields requires more and more sophisticated formulations to cons...
In this paper a formulation to deal with the Finite Element modelling of coupled electric-mechanical...
In this paper a model to deal with electric-mechanical contact problems in the framework of the FEM ...
In this paper a model to deal with electric-mechanical contact problems in the framework of the FEM ...
In this paper a model to deal with electric-mechanical contact problems in the framework of the FEM ...
In this paper a model to deal with electric-mechanical contact problems in the framework of the FEM ...
This work is devoted to the development of a new constitutive model for electric–mechanical contacts...
The solution of contact problems involves great numerical efforts to satisfy non-penetration conditi...
The solution of contact problems involves great numerical efforts to satisfy non-penetration conditi...
In this paper the formulation of an electric-mechanical beam-to-beam contact element is presented. B...
In this paper the formulation of an electric-mechanical beam-to-beam contact element is presented. B...
In this paper the formulation of an electric-mechanical beam-to-beam contact element is presented. B...
The contact element formulation presented considers microscopically mechanisms of force transmission...