The nature of elastomeric material demands the consideration of finite deformations, nonlinear elasticity including damage as well as rate-dependent and rate-independent dissipative properties. While many models accounting for these effects have been refined over time to do better justice to the real behavior of rubber-like materials, the realistic simulation of the elastoplastic characteristics for filled rubber remains challenging
particularly the rubber materials [1,2]. Rubber materials are known to experience swellingwhen in co...
The nonlinear viscoelastic behavior of the composites of rubber filled with carbon black, silica, ca...
International audienceA constitutive model is proposed for a class of filled elastomers exhibiting p...
AbstractThe nature of elastomeric material demands the consideration of finite deformations, nonline...
Owing to its unique physical properties, rubber plays a keyrole in countless industrial applications...
Elasticity and damping are significant properties of rubber, taken advantage of in engineering appli...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 1999.Include...
AbstractA phenomenological uniaxial model is derived for implementation in the time domain, which ca...
Elastomers typically are filled with nanoscopic particulates to improve their mechanical properties,...
A constitutive model was developed for the description of the viscoelastic (time-dependent) behavior...
The large strain behavior of filled rubbers is characterized by the strong Mullins effect, permanent...
International audienceA constitutive modelling of the behaviour of a filled rubber is proposed in or...
Elastomeric composites have increasingly proved invaluable in commercial technological applications ...
The simulation of rubber-like material behaviour by means of the finite element method has been desc...
A constitutive model for the description of the time-dependent behaviour as well as the hysteresis b...
particularly the rubber materials [1,2]. Rubber materials are known to experience swellingwhen in co...
The nonlinear viscoelastic behavior of the composites of rubber filled with carbon black, silica, ca...
International audienceA constitutive model is proposed for a class of filled elastomers exhibiting p...
AbstractThe nature of elastomeric material demands the consideration of finite deformations, nonline...
Owing to its unique physical properties, rubber plays a keyrole in countless industrial applications...
Elasticity and damping are significant properties of rubber, taken advantage of in engineering appli...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 1999.Include...
AbstractA phenomenological uniaxial model is derived for implementation in the time domain, which ca...
Elastomers typically are filled with nanoscopic particulates to improve their mechanical properties,...
A constitutive model was developed for the description of the viscoelastic (time-dependent) behavior...
The large strain behavior of filled rubbers is characterized by the strong Mullins effect, permanent...
International audienceA constitutive modelling of the behaviour of a filled rubber is proposed in or...
Elastomeric composites have increasingly proved invaluable in commercial technological applications ...
The simulation of rubber-like material behaviour by means of the finite element method has been desc...
A constitutive model for the description of the time-dependent behaviour as well as the hysteresis b...
particularly the rubber materials [1,2]. Rubber materials are known to experience swellingwhen in co...
The nonlinear viscoelastic behavior of the composites of rubber filled with carbon black, silica, ca...
International audienceA constitutive model is proposed for a class of filled elastomers exhibiting p...