A hyperelastic constitutive model for rubber-like materials
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Publication:326073
DOI10.1016/j.euromechsol.2012.09.010zbMath1347.74009OpenAlexW2011835431MaRDI QIDQ326073
H. Khajehsaeid, R. Naghdabadi, J. Arghavani
Publication date: 12 October 2016
Published in: European Journal of Mechanics. A. Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.euromechsol.2012.09.010
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Cites Work
- Unnamed Item
- A three-dimensional constitutive model for the large stretch behavior of rubber elastic materials
- A theory of network alteration for the Mullins effect
- Hyperelastic constitutive model for rubber-like materials based on the first Seth strain measures invariant
- Modeling and validation of the large deformation inelastic response of amorphous polymers over a wide range of temperatures and strain rates
- A second order constitutive theory for hyperelastic materials
- A physically based method to represent the thermo-mechanical behaviour of elastomers
- On the relevance of continuum damage mechanics as applied to the Mullins effect in elastomers
- A micromechanically motivated material model for the thermo-viscoelastic material behaviour of rubber-like polymers.
- Hyperelastic materials behavior modeling using consistent strain energy density functions
- Constitutive modeling of the large strain time-dependent behavior of elastomers.
- New phenomenological behavior laws for rubbers and thermoplastic elastomers
- Fitting hyperelastic models to experimental data
- Development of new constitutive equations for the Mullins effect in rubber using the network alteration theory
- A damage directional constitutive model for Mullins effect with permanent set and induced anisotropy
- Nonlinear dependence of viscosity in modeling the rate-dependent response of natural and high damping rubbers in compression and shear: experimental identification and numerical verification
- A model of incompressible isotropic hyperelastic material behavior using spline interpolations of tension-compression test data
- The mechanics of rubber elasticity
- Mechanical and Swelling Behaviors of Rubber: A Comparison of Some Molecular Models with Experiment
- Large elastic deformations of isotropic materials VII. Experiments on the deformation of rubber
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