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A Generalized Yield Criterion 被引量:2

A Generalized Yield Criterion
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摘要 A generalized yield criterion is proposed based on the metai plastic deformation mechanics and the fundamental formula in theory of plasticity. Using the generalized yield criterion, the reason is explained that Mises yield criterion and Tresca yield criterion do not completely match with experimental data. It has been shown that the yield criteria of ductile metals depend not only on the quadratic invariant of the deviatoric stress tensor J2, but also on the cubic invariant of the deviatoric stress tensor J3 and the ratio of the yield stress in pure shear to the yield stress in uniaxial tension κ/σs. The reason that Mises yield criterion and Tresca yield criterion are not in good agreement with the experimental data is that the effect of J3 and κ/σs is neglected. A generalized yield criterion is proposed based on the metai plastic deformation mechanics and the fundamental formula in theory of plasticity. Using the generalized yield criterion, the reason is explained that Mises yield criterion and Tresca yield criterion do not completely match with experimental data. It has been shown that the yield criteria of ductile metals depend not only on the quadratic invariant of the deviatoric stress tensor J2, but also on the cubic invariant of the deviatoric stress tensor J3 and the ratio of the yield stress in pure shear to the yield stress in uniaxial tension κ/σs. The reason that Mises yield criterion and Tresca yield criterion are not in good agreement with the experimental data is that the effect of J3 and κ/σs is neglected.
出处 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2004年第6期800-802,共3页 材料科学技术(英文版)
关键词 Metai Plastic deformation Yield criterion Metai Plastic deformation Yield criterion
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  • 1[1]J.P.Bandet: J. Appl. Mech., ASME, 1990, 57, 498.
  • 2[2]M.G.Pariseau: Inter. J. Rock. Mech. Min. Sci. GeomechAbstr., 1994, 31(5), 550.
  • 3[3]Z.J.Shen and M.H.Yu: in Proc. Int. Symp. on Strength Theory: Application, DeYelopment & Prospects for 21st Century,Xi'an, China, 1998, 61.
  • 4[4]M.H.Yu: Appl. Mech. Rev., 2002, 3, 169.
  • 5[5]M.H.Yu: Inter. J. Mech. Sci., 1983, 25(1), 71.
  • 6[6]M.H.Yu, L.N.Ne and L.Y.Song: Science in China, English edition, Series A, 1985, 28(11), 1113.
  • 7[7]M.H.Yu, L.N.He and C.Y.Liu: Chinese Science Bulletin, 1992,37(24), 2085.
  • 8[8]S.C.Fan, M.H.Yu and S.Y.Yang: J. Appl. Mech., ASME, 2001,68, 341.
  • 9[9]M.H.Yu: Unified Strength Theory and its Applications, Heidelberg-Berlin, Springer, 2002, 34.
  • 10[10]W.F.Chen and D.J.Han: Plasticity for Structural Engineering, Springer-Verlag, New York, 1988, 89.

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