This paper presents the application of the Virtual Fields Method (VFM) for the characterization of viscoelastic behaviour of rubbers. The relaxation behaviour of the rubbers following a dynamic loading event is characterised using the dynamic VFM in which full-field (two dimensional) strain and acceleration data, obtained from high-speed imaging, are analysed by the principle of virtual work without traction force data, instead using the acceleration fields in the specimen to provide stress information. Two (silicone and nitrile) rubbers were tested in tension using a drop-weight apparatus. It is assumed that the dynamic behaviour is described by the combination of hyperelastic and Prony series models. A VFM based procedure is designed and ...
The use of rubber like materials has a number applications, from automotive to aeronautics and many...
The present work aims at identifying an el...
MasterIntermediate/High strain rate experiments are seriously affected by inertia, stress wave, nois...
This paper presents the application of the Virtual Fields Method (VFM) for the characterization of v...
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...
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...
Elastomeric materials are widely used for energy absorption applications, often experiencing high st...
International audienceIn this study, the Virtual Fields Method (VFM) is applied to identify constitu...
New methods are emerging in the material characterisation field with the aim of exploiting innovativ...
AbstractThis paper deals with the identification of constitutive parameters of a Mooney model suitab...
This paper presents a novel apparatus, combined with application of the Virtual Fields Method (VFM) ...
MasterThe novel Virtual Fields Method (VFM) for dynamic material characterization, which uses only a...
The use of rubber like materials has a number applications, from automotive to aeronautics and many...
The present work aims at identifying an el...
MasterIntermediate/High strain rate experiments are seriously affected by inertia, stress wave, nois...
This paper presents the application of the Virtual Fields Method (VFM) for the characterization of v...
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...
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...
Elastomeric materials are widely used for energy absorption applications, often experiencing high st...
International audienceIn this study, the Virtual Fields Method (VFM) is applied to identify constitu...
New methods are emerging in the material characterisation field with the aim of exploiting innovativ...
AbstractThis paper deals with the identification of constitutive parameters of a Mooney model suitab...
This paper presents a novel apparatus, combined with application of the Virtual Fields Method (VFM) ...
MasterThe novel Virtual Fields Method (VFM) for dynamic material characterization, which uses only a...
The use of rubber like materials has a number applications, from automotive to aeronautics and many...
The present work aims at identifying an el...
MasterIntermediate/High strain rate experiments are seriously affected by inertia, stress wave, nois...