Elastomeric materials are widely used for energy absorption applications, often experiencing high strain rate deformations. The mechanical characterization of rubbers at high strain rates presents several experimental difficulties, especially associated with achieving adequate signal to noise ratio and static stress equilibrium, when using a conventional technique such as the split Hopkinson pressure bar. In the present study, these problems are avoided by using the dynamic Virtual Fields Method (VFM) in which acceleration fields, clearly generated by the non-equilibrium state, are utilized as a force measurement with in the frame work of the principle of virtual work equation. In this paper, two dynamic VFM based techniques are used to cha...
This paper presents a novel apparatus, combined with application of the Virtual Fields Method (VFM) ...
The present work aims at identifying an el...
International audienceThis paper deals with the identification of constitutive parameters of a Moone...
Elastomeric materials are widely used for energy absorption applications, often experiencing high st...
Experimental techniques for measuring the mechanical response of rubbers under dynamic loading are d...
This paper describes an experimental technique for characterizing the uniaxial stress-strain relatio...
This paper presents the application of the Virtual Fields Method (VFM) for the characterization of v...
Conventional dynamic experiments on rubbers have several limitations including low signal-to-noise r...
In this work, the Virtual Fields Method is employed in order to identify the parameters of constitut...
MasterThe novel Virtual Fields Method (VFM) for dynamic material characterization, which uses only a...
International audienceIn this study, the Virtual Fields Method (VFM) is applied to identify constitu...
MasterIn this study, the dynamic property at high strain rates was identified using acceleration inf...
This work focuses on the development of a novel experimental procedure for high strain rate testing ...
New methods are emerging in the material characterisation field with the aim of exploiting innovativ...
Finite element (FE) simulations are very important in the field of automotive, aerospace and defense...
This paper presents a novel apparatus, combined with application of the Virtual Fields Method (VFM) ...
The present work aims at identifying an el...
International audienceThis paper deals with the identification of constitutive parameters of a Moone...
Elastomeric materials are widely used for energy absorption applications, often experiencing high st...
Experimental techniques for measuring the mechanical response of rubbers under dynamic loading are d...
This paper describes an experimental technique for characterizing the uniaxial stress-strain relatio...
This paper presents the application of the Virtual Fields Method (VFM) for the characterization of v...
Conventional dynamic experiments on rubbers have several limitations including low signal-to-noise r...
In this work, the Virtual Fields Method is employed in order to identify the parameters of constitut...
MasterThe novel Virtual Fields Method (VFM) for dynamic material characterization, which uses only a...
International audienceIn this study, the Virtual Fields Method (VFM) is applied to identify constitu...
MasterIn this study, the dynamic property at high strain rates was identified using acceleration inf...
This work focuses on the development of a novel experimental procedure for high strain rate testing ...
New methods are emerging in the material characterisation field with the aim of exploiting innovativ...
Finite element (FE) simulations are very important in the field of automotive, aerospace and defense...
This paper presents a novel apparatus, combined with application of the Virtual Fields Method (VFM) ...
The present work aims at identifying an el...
International audienceThis paper deals with the identification of constitutive parameters of a Moone...