Homogenization in micro-magneto-mechanics
DOI10.1007/s00466-016-1286-yzbMath1398.74108OpenAlexW2361844558WikidataQ113327525 ScholiaQ113327525MaRDI QIDQ2630813
Publication date: 22 July 2016
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-016-1286-y
variational principleshomogenizationfinite element methodsphase-field modelsmagnetostrictionmagnetic domainsmagneto-mechanics
Finite element methods applied to problems in solid mechanics (74S05) Micromechanics of solids (74M25) Effective constitutive equations in solid mechanics (74Q15) Electromagnetic effects in solid mechanics (74F15) Homogenization in equilibrium problems of solid mechanics (74Q05)
Related Items (3)
Cites Work
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- Homogenization-based constitutive models for magnetorheological elastomers at finite strain
- Homogenization in finite thermoelasticity
- A multi-field incremental variational framework for gradient-extended standard dissipative solids
- A variational formulation for the incremental homogenization of elasto-plastic composites
- A geometrically consistent incremental variational formulation for phase field models in micromagnetics
- Homogenisation of magneto-elastic behaviour: from the grain to the macro scale
- Reversible magneto-elastic behavior: a multiscale approach
- On the effective behavior of nonlinear inelastic composites. I: Incremental variational principles
- A continuum thermodynamics formulation for micro-magneto-mechanics with applications to ferromagnetic shape memory alloys
- Energy minimizers for large ferromagnetic bodies
- Computational micro-to-macro transitions for discretized micro-structures of heterogeneous materials at finite strains based on the minimization of averaged incremental energy.
- A framework for micro-macro transitions in periodic particle aggregates of granular materials.
- A constrained theory of magnetoelasticity
- Two-scale computational homogenization of electro-elasticity at finite strains
- Two-scale homogenization of electromechanically coupled boundary value problems
- Homogenization estimates for fiber-reinforced elastomers with periodic microstructures
- A constitutive model for magnetostrictive and piezoelectric materials
- Computational homogenization in dissipative electro-mechanics of functional materials
- An analytical and numerical approach for calculating effective material coefficients of piezoelectric fiber composites
- Multi-scale second-order computational homogenization of multi-phase materials: a nested finite element solution strategy
- On finitely strained magnetorheological elastomers
- Variational principles in dissipative electro-magneto-mechanics: A framework for the macro-modeling of functional materials
- Variational-based modeling of micro-electro-elasticity with electric field-driven and stress-driven domain evolutions
- Homogenization and two‐scale simulations of granular materials for different microstructural constraints
- Recent Developments in the Modeling, Analysis, and Numerics of Ferromagnetism
- Computational homogenization for heat conduction in heterogeneous solids
- Multi‐scale constitutive modelling of heterogeneous materials with a gradient‐enhanced computational homogenization scheme
- Strain-driven homogenization of inelastic microstructures and composites based on an incremental variational formulation
- Homogenization of micromagnetics large bodies
- On constitutive macro-variables for heterogeneous solids at finite strain
- Variational modeling and homogenization in dissipative magneto‐mechanics
- Coordinate‐invariant phase field modeling of ferro‐electrics, part II: Application to composites and poly‐crystals
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