Pages that link to "Item:Q597823"
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The following pages link to A constitutive model for the Mullins effect with permanent set in particle-reinforced rubber (Q597823):
Displaying 50 items.
- Mesoscale constitutive modeling of non-crystallizing filled elastomers (Q268001) (← links)
- Time-dependent behavior of passive skeletal muscle (Q332508) (← links)
- On a molecular statistical basis for Ogden's model of rubber elasticity (Q340030) (← links)
- Prediction of the softening and damage effects with permanent set in fibrous biological materials (Q361460) (← links)
- A model for the Mullins effect during multicyclic equibiaxial loading (Q368163) (← links)
- The mathematics of myth: yield stress behavior as a limit of non-monotone constitutive theories (Q377290) (← links)
- Finite element implementation of a microstructure-based model for filled elastomers (Q414326) (← links)
- Mechanics of soft active materials with phase evolution (Q422593) (← links)
- Constitutive framework for the modeling of damage in collagenous soft tissues with application to arterial walls (Q438128) (← links)
- An implicit three-dimensional model for describing the inelastic response of solids undergoing finite deformation (Q520479) (← links)
- On the Mullins effect and hysteresis of fibered biological materials: a comparison between continuous and discontinuous damage models (Q546648) (← links)
- A simple framework for full-network hyperelasticity and anisotropic damage (Q645805) (← links)
- A network evolution model for the anisotropic mullins effect in carbon black filled rubbers (Q837816) (← links)
- Mullins' effect in semicrystalline polymers (Q837863) (← links)
- Effect of stress-softening on the dynamics of a load supported by a rubber string (Q944931) (← links)
- A constitutive model dealing with damage due to cavity growth and the Mullins effect in rubber-like materials under triaxial loading (Q957452) (← links)
- Nonlinear electro-thermo-viscoelasticity (Q968086) (← links)
- A comparison between pseudo-elastic and damage models for modelling the Mullins effect in industrial rubber components (Q985965) (← links)
- An anisotropic pseudo-elastic approach for modelling Mullins effect in fibrous biological materials (Q985967) (← links)
- Modeling of anisotropic softening phenomena: Application to soft biological tissues (Q1013941) (← links)
- Brain tissue deforms similarly to filled elastomers and follows consolidation theory (Q1019394) (← links)
- A pseudo-elastic model for loading, partial unloading and reloading of particle-reinforced rubber. (Q1418209) (← links)
- Soft-cuticle biomechanics: a constitutive model of anisotropy for caterpillar integument (Q1617373) (← links)
- A visco-hyperelastic constitutive model for rubber-like materials: a rate-dependent relaxation time scheme (Q1617999) (← links)
- WYPiWYG damage mechanics for soft materials: a data-driven approach (Q1639601) (← links)
- Loss of ellipticity in elasticity with energy limiters (Q1658635) (← links)
- Statistical approach for a continuum description of damage evolution in soft collagenous tissues (Q1667306) (← links)
- Unified constitutive modeling of rubber-like materials under diverse loading conditions (Q1796415) (← links)
- Stress softening of elastomers in hydrostatic tension (Q1875773) (← links)
- An endochronic plasticity formulation for filled rubber (Q1959962) (← links)
- Generalised viscoelastic fibre at small strain (Q2060980) (← links)
- Multiscale modeling of fiber recruitment and damage with a discrete fiber dispersion method (Q2064787) (← links)
- Experimental and numerical investigation of the electro-mechanical response of particle filled elastomers. I: Experimental investigations (Q2168368) (← links)
- Experimental and numerical investigations of the electro-mechanical response of particle filled elastomers. II: Continuum modeling approach (Q2168375) (← links)
- Constitutive modelling for the Mullins effect with permanent set and induced anisotropy in particle-filled rubbers (Q2247249) (← links)
- On effective behavior of microstructures embedding general interfaces with damage (Q2281492) (← links)
- Micro-to-macro transition accounting for general imperfect interfaces (Q2309026) (← links)
- A micro-macro approach to rubber-like materials. III: The micro-sphere model of anisotropic Mullins-type damage (Q2456826) (← links)
- Deflections of a rubber membrane (Q2456895) (← links)
- Finite element formulation for modeling particle debonding in reinforced elastomers subjected to finite deformations (Q2459258) (← links)
- A damage directional constitutive model for Mullins effect with permanent set and induced anisotropy (Q2499220) (← links)
- Finite element formulation for modeling nonlinear viscoelastic elastomers (Q2638090) (← links)
- Field dependent magneto-viscoelasticity in particle reinforced elastomer (Q2692828) (← links)
- Comparative analysis of damage functions for soft tissues: Properties at damage initialization (Q2950705) (← links)
- The pseudo-elastic response of rubberlike solids (Q2954766) (← links)
- Cвойства диаграмм нагружения и разгрузки, порождаемых нелинейным определяющим соотношением типа Максвелла для реономных материалов (Q3120965) (← links)
- A pseudo–elastic model for the Mullins effect in filled rubber (Q4719856) (← links)
- The generalized viscoelastic spring (Q5160925) (← links)
- A pseudo-anelastic model for stress softening in liquid crystal elastomers (Q5161183) (← links)
- A thermomechanical constitutive model for super-stretchable multi-walled carbon nanotube-enforced polyimide aerogel (Q6074768) (← links)