Definition of a new predictor for multiaxial fatigue crack nucleation in rubber
From MaRDI portal
Publication:731159
DOI10.1016/J.JMPS.2007.05.019zbMath1171.74419OpenAlexW2065024898MaRDI QIDQ731159
Publication date: 1 October 2009
Published in: Journal of the Mechanics and Physics of Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.jmps.2007.05.019
Related Items (4)
On curved crack paths in finite strain fracture mechanics ⋮ Constitutive modeling of the cyclic dissipation in thin and thick rubber specimens ⋮ Study of the simple extension tear test sample for rubber with configurational mechanics ⋮ Some specific features and consequences of the thermal response of rubber under cyclic mechanical loading
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Unnamed Item
- On spatial and material settings of hyperelastostatic crystal defects
- The energy-momentum tensor and material uniformity in finite elasticity
- Pseudomomentum and material forces in inhomogeneous materials. (Application to the fracture of electromagnetic materials in electromagnetoelastic fields)
- The elastic energy-momentum tensor
- Applications of an energy-momentum tensor in non-linear elastostatics
- On the properties of the Eshelby tensor
- Fracture criteria based on local properties of the Eshelby tensor.
- Application of the material force method to isotropic continuum damage
- Configurational forces and their application in solid mechanics
- Application of material forces to hyperelastostatic fracture mechanics. I: Continuum mechanical setting
- A literature survey on fatigue analysis approaches for rubber
- Configuration forces as basic concepts of continuum physics
- Prediction of fatigue life improvement in natural rubber using configurational stress
- Multiaxial stress effects on fatigue behavior of filled natural rubber
- Multiaxial fatigue life prediction for a natural rubber
- On the comparison of two approaches to compute material forces for inelastic materials. Application to single-slip crystal-plasticity
- A material force method for inelastic fracture mechanics
- On The Role of the Eshelby Energy-Momentum Tensor in Materials with Multiple Natural Configurations
- Studies in elastic fracture mechanics based on the material force method
- Mechanics in Material Space
- "Material" mechanics of materials
- VI. The phenomena of rupture and flow in solids
- Large deformation isotropic elasticity – on the correlation of theory and experiment for incompressible rubberlike solids
- Conservation Laws and Energy-Release Rates
- The force on an elastic singularity
- Application of material forces to hyperelastostatic fracture mechanics. II: Computational setting.
- Short history of experiments in solid mechanics
This page was built for publication: Definition of a new predictor for multiaxial fatigue crack nucleation in rubber