Theoretical latent hardening in crystals - I. General equations for tension and compression with application to F. C. C. Crystals in tension
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Publication:1258196
DOI10.1016/0022-5096(79)90009-7zbMath0407.73030OpenAlexW2011076789MaRDI QIDQ1258196
R. F. Vause, G. S. Baker, Havner, Kerry S.
Publication date: 1979
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(79)90009-7
Nonlinear elasticity (74B20) Plastic materials, materials of stress-rate and internal-variable type (74C99)
Related Items (12)
Analysis of a family of unstable lattice orientations in (110) channel die compression ⋮ On finite deformation of F.C.C. crystals in (110) channel die compression ⋮ Theoretical latent hardening in crystals. - II. bcc crystals in tension and compression ⋮ The kinematics of double slip with application to cubic crystals in the compression test ⋮ Perspectives on (1 1 0) channel die compression and analysis of the Goss orientation ⋮ Theoretical latent hardening in crystals. III. f.c.c. crystals in compression ⋮ Constitutive relations of metal crystals at arbitrary strain ⋮ Theoretical latent hardening of crystals in double slip. I. F. C. C. crystals with a common slip plane ⋮ Perspectives in the mechanics of elastoplastic crystals ⋮ Investigation of basic crystal hardening inequalities in a range of stable lattice orientations in \((110)\) channel die compression ⋮ Theoretical latent hardening of crystals in double-slip. II. f.c.c. crystals slipping on distinct planes ⋮ Theoretical analysis of the channel die compression test. I. General considerations and finite deformation of f.c.c. crystals in stable lattice orientations
Cites Work
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- The slip theory of plasticity for crystalline aggregates
- Aspects of theoretical plasticity at finite deformation and large pressure
- On uniqueness criteria and minimum principles for crystalline solids at finite strain
- A general kinematical analysis of double slip
- On the mechanics of crystalline solids
- Constitutive analysis of elastic-plastic crystals at arbitrary strain
- A simple mathematical theory of finite distortional latent hardening in single crystals
- On constitutive macro-variables for heterogeneous solids at finite strain
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