Macroscopic damage laws based on analysis of microscopic unit cells
From MaRDI portal
Publication:6064370
DOI10.1002/zamm.201700188OpenAlexW2753768943MaRDI QIDQ6064370
Unnamed Author, Michael Brünig, Steffen Gerke
Publication date: 12 December 2023
Published in: ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1002/zamm.201700188
Fracture and damage (74Rxx) Numerical and other methods in solid mechanics (74Sxx) Plastic materials, materials of stress-rate and internal-variable type (74Cxx)
Related Items (3)
Numerical analysis of stress-state-dependent damage and failure behavior of ductile steel based on biaxial experiments ⋮ Integral‐based averaging with spatial symmetries for non‐local damage modelling ⋮ Shape optimization of the X0-specimen: theory, numerical simulation and experimental verification
Cites Work
- The growth and coalescence of ellipsoidal voids in plane strain under combined shear and tension
- Damage at negative triaxiality
- An anisotropic ductile damage model based on irreversible thermodynamics.
- A unified periodical boundary conditions for representative volume elements of composites and applications.
- Numerical analysis of anisotropic ductile continuum damage.
- Modeling of crack growth in ductile solids: a three-dimensional analysis
- \(FE^2\) multiscale approach for modelling the elastoviscoplastic behaviour of long fibre SiC/Ti composite materials
- Shear deformation of voids with contact modelled by internal pressure
- On ductile fracture initiation toughness: effects of void volume fraction, void shape and void distribution
- Micromechanical analysis on the influence of the Lode parameter on void growth and coalescence
- Failure by void coalescence in metallic materials containing primary and secondary voids subject to intense shearing
- Modeling of ductile fracture: significance of void coalescence
- Material Failure by Void Growth to Coalescence
- A Course on Damage Mechanics
- Numerical analysis of the influence of the Lode parameter on void growth
This page was built for publication: Macroscopic damage laws based on analysis of microscopic unit cells