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A Generalized Anisotropic Hardening Rule Based on the Mroz Multi-Yield-Surface Model and Various Classical Yield Functions

Journal Article
2009-01-1392
ISSN: 1946-3979, e-ISSN: 1946-3987
Published April 20, 2009 by SAE International in United States
A Generalized Anisotropic Hardening Rule Based on the Mroz Multi-Yield-Surface Model and Various Classical Yield Functions
Sector:
Citation: Choi, K. and Pan, J., "A Generalized Anisotropic Hardening Rule Based on the Mroz Multi-Yield-Surface Model and Various Classical Yield Functions," SAE Int. J. Mater. Manf. 2(1):537-546, 2009, https://doi.org/10.4271/2009-01-1392.
Language: English

References

  1. Prager W. 1955 The theory of plasticity - a survey of recent achievements Proc. Inst. Mech. Eng. 169 41 57
  2. Ziegler H. 1959 A modification of Prager's hardening rule Quart. Appl. Math. 17 55 65
  3. Armstrong P. J. Frederick C. O. 1966 A mathematical representation of the multiaxial Bauschinger effect C.E.G.B. Report RD/B/N 731
  4. Mroz Z. 1967 On the description of anisotropic workhardening J. Mech. Phys. Solids 15 163 175
  5. Dafalias Y. F. Popov E. P. 1976 Plastic internal variables formalism of cyclic plasticity J. Appl. Mech. 43 645 651
  6. Chaboche J. L. 1977 Viscoplastic constitutive equations for the description of cyclic and anisotropic behavior of metals Bull. de l’ Acad. Polonaaise des Sciences, Sévie Sc. et Techn. 25 33 42
  7. Chaboche J. L. 1986 Time independent constitutive theories for cyclic plasticity Int. J. Plasticity 2 149 188
  8. Mroz Z. 1969 An attempt to describe the behavior of metals under cyclic loads using a more general workhardening model Acta Mech. 7 199 212
  9. Lamba H. S. Sidebottom O. M. 1978a Cyclic plasticity for nonproportional paths: Part 1 - Cyclic hardening, erasure of memory, and subsequent strain hardening experiments J. Engng. Mater. Tech. 100 96 103
  10. Lamba H. S. Sidebottom O. M. 1978b Cyclic plasticity for nonproportional paths: Part 2 - Comparison with predictions of three incremental plasticity models J. Engng. Mater. Tech. 100 104 111
  11. Krieg R. D. 1975 A practical two surface plasticity theory J. Appl. Mech. 42 641 646
  12. Dafalias Y. F. Popov E. P. 1975 A model of nonlinearly hardening materials for complex loading Acta Mech. 21 173 192
  13. Chu C. C. 1984 A three-dimensional model of anisotropic hardening in metals and its application to the analysis of sheet metal formability J. Mech. Phys. Solids 32 197 212
  14. Chu C. C. 1987 The analysis of multiaxial cyclic problems with an anisotropic hardening model Int. J. Solids Structures 23 569 579
  15. Hill R. 1948 A theory of the yielding and plastic flow of anisotropic metals Proc. Roy. Soc. London 193 281 297
  16. Tang S. C. 1990 An anisotropic hardening rule for the analysis of sheet metal forming operations In: Advanced Technology of Plasticity 1990 Proc. 3ICTP Kyoto, Japan 3 1149 1154
  17. Spitzig W. A. Richmond O. 1979 Effect of hydrostatic pressure on the deformation behavior of polyethylene and polycarbonate in tension and in compression Polym. Engng. Sci. 19 1129 1139
  18. Spitzig W. A. Richmond O. 1984 The effect of pressure on the flow stress of metals Acta Metall. 32 457 463
  19. Drucker D. C. Prager W. 1952 Soil mechanics and plastic analysis or limit design Quart. Appl. Math. 10 157 165
  20. Choi K. S. Pan J. 2008 A generalized anisotropic hardening rule based on the Mroz multi-yield-surface model for pressure insensitive and sensitive materials Int. J. Plasticity
  21. ABAQUS 2004 User's manual for Version 6.5 ABAQUS, Inc. Providence, RI

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