IUTAM Symposium on Variational Concepts with Applications to the Mechanics of Materials : Proceedings of the IUTAM Symposium on Variational Concepts with Applications to the Mechanics of Materials, Bochum, Germany, September 22-26, 2008 /
Autor Corporativo: | |
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Otros Autores: | |
Formato: | eBook |
Lenguaje: | English |
Publicado: |
Dordrecht :
Springer Netherlands : Imprint: Springer,
2010.
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Edición: | 1st ed. 2010. |
Colección: | IUTAM Bookseries,
21 |
Materias: |
Tabla de Contenidos:
- Stability of Quasi-Static Crack Evolution through Dimensional Reduction
- FE2-Simulation of Microheterogeneous Steels Based on Statistically Similar RVEs
- Advancements in the Computational Calculus of Variations
- A Phase Field Approach to Wetting and Contact Angle Hysteresis Phenomena
- Application of Relaxation Methods in Materials Science: From the Macroscopic Response of Elastomers to Crystal Plasticity
- Variational Concepts with Applications to Microstructural Evolution
- A Micromechanical Model for Polycrystalline Shape Memory Alloys – Formulation and Numerical Validation
- Solution-Precipitation Creep – Modeling and Extended FE Implementation
- Time-Continuous Evolution of Microstructures in Finite Plasticity
- Models for Dynamic Fracture Based on Griffith’s Criterion
- An Energetic Approach to Deformation Twinning
- Computational Homogenization of Confined Frictional Granular Matter
- Existence Theory for Finite-Strain Crystal Plasticity with Gradient Regularization
- Error Bounds for Space-Time Discretizations of a 3D Model for Shape-Memory Materials
- On the Implementation of Variational Constitutive Updates at Finite Strains
- Phase-Field Modeling of Nonlinear Material Behavior
- Polyconvex Energies for Trigonal, Tetragonal and Cubic Symmetry Groups
- Phase Transitions with Interfacial Energy: Interface Null Lagrangians, Polyconvexity, and Existence
- A Unified Variational Setting and Algorithmic Framework for Mono- and Polycrystalline Martensitic Phase Transformations
- Dissipative Systems in Contact with a Heat Bath: Application to Andrade Creep.