## Mechanics and Thermomechanics of Rubberlike SolidsThis work gives for the first time an interdisciplinary and deep approach to the mathematical modelling of rubber-like materials considering both the molecular and phenomenological point of views. It contains an introduction to the suitable numerical techniques and an overview of experimental techniques and data with a short survey on some industrial applications. Elastic and inelastic effects are discussed in details. The book is suitable for applied mathematicians, mechanical engineers, civil engineers, material scientists and polymer scientists. |

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### Other editions - View all

Mechanics and Thermomechanics of Rubberlike Solids Guiseppe Saccomandi,Ray W. Ogden Limited preview - 2004 |

Mechanics and Thermomechanics of Rubberlike Solids Guiseppe Saccomandi,Ray W. Ogden No preview available - 2014 |

### Common terms and phrases

antiplane applied approximation assume behaviour boundary conditions Cauchy stress chain compression consider constant constitutive equations constitutive model crosslinked curves damage defined deformation gradient denoted depends deviatoric displacement elastic free energy elastomeric elastomers energy function example experiment experimental data expression extension finite elasticity finite element force given Govindjee hyperelastic material hysteresis incompressible incompressible material invariants inverse isotropic linear elastic linear viscoelastic material response material symmetry measure mechanics method molecular motion Mullins effect natural rubber neo-Hookean nominal stress nonlinear elasticity notation Note numerical obtained Ogden parameters Piola-Kirchhoff stress tensor polymer principal stretches problem reference configuration relation respect Rivlin rubber elasticity rubberlike solids Saccomandi Section shear modulus shear strain shown in Figure Simo simple shear simple tension solution specimen strain energy strain-energy function stress relaxation stress softening stress tensor stress-strain structure tangent temperature tensile theory Treloar uniaxial unloading vector viscoelastic weak form zero