A micromechanical model of texture induced orthotropy in planar crystalline polymers.
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Publication:1586227
DOI10.1016/0022-5096(95)00076-3zbMath1054.74551OpenAlexW2075758066MaRDI QIDQ1586227
Publication date: 13 November 2000
Published in: Journal of the Mechanics and Physics of Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/0022-5096(95)00076-3
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Cites Work
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- An analysis of texture and plastic spin for planar polycrystals
- On transversely isotropic, orthotropic and relative isotropic functions of symmetric tensors, skew-symmetric tensors and vectors. I, II, III, IV, V
- A new mathematical theory of simple materials
- A mathematical theory of the mechanical behavior of continuous media
- Distribution of directional data and fabric tensors
- Micromechanical and thermodynamic aspects of the plastic spin
- Group theory and representation of microstructure and mechanical behavior of polycrystals
- Texture evolution and plastic response of two-dimensional polycrystals
- Strain localization in ductile single crystals
- Micromechanical modeling of large plastic deformation and texture evolution in semi-crystalline polymers
- On representations of anisotropic invariants
- Polycristalline plastic deformation and texture evolution for crystals lacking five independent slip systems
- Slow Flows of Anisotropic Fluids
- The Plastic Spin
- Aspects of Invariance in Solid Mechanics
- Bounds and self-consistent estimates for creep of polycrystalline materials
- Two-dimensional tensor function representation for all kinds of material symmetry
- On constitutive macro-variables for heterogeneous solids at finite strain
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