THE EFFECT OF MICROSTRUCTURE ON ELASTIC-PLASTIC MODELS

被引:20
|
作者
AN, LJ
PEIRCE, A
机构
[1] McMaster Univ, Hamilton, Ont
关键词
ILL POSED EQUATIONS; GRANULAR MATERIAL; THE FLUTTER INSTABILITY; SHEAR BANDING; SHEAR STRAIN HARDENING; LOSS OF HYPERBOLICITY; SINGULAR PERTURBATION;
D O I
10.1137/S0036139992238498
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
For large deformations, the governing equations of elastic-plastic flow may lose their hyperbolicity and become ill posed at some critical values of the hardening modulus. This ill-posedness is characterized by uncontrolled growth of the amplitude of plane wave solutions in certain directions. To capture post-critical behavior, microstructure is built into the constitutive relations. Two types of microstructure are included: one accounts for intergranular rotation via Cosserat theory, and the other accounts for the formation of voids at the microscale by means of a new pressure term related to the gradient of the dilational deformation. Using both a linearized analysis and integral estimates, it is shown that the microstructure terms provide regularizing mechanisms that inhibit the occurrence of both shear band ill-posedness and flutter ill-posedness. Moreover, a local analysis shows that the problem can be reduced to two turning point singular Schrodinger equations in the neighborhood of points where the equations reach the critical value of the hardening modulus. Using matched asymptotics and Wentzel-Kramers-Brillouin (WKB) theory, a relation is derived between the thickness of the localization (internal layer) and the internal length scale of the material introduced by the microstructure terms
引用
收藏
页码:708 / 730
页数:23
相关论文
共 50 条
  • [1] Elastic-plastic constitutive equation accounting for microstructure
    Takashima, Shuji
    Miyazaki, Noriyuki
    Ikeda, Toru
    Nakagaki, Michihiko
    [J]. ENGINEERING PLASTICITY AND ITS APPLICATIONS FROM NANOSCALE TO MACROSCALE, PTS 1 AND 2, 2007, 340-341 : 1037 - +
  • [2] An analytical solution for elastic and elastic-plastic contact models
    Liu, ZQ
    Neville, A
    Reuben, RL
    [J]. TRIBOLOGY TRANSACTIONS, 2000, 43 (04) : 627 - 634
  • [3] EFFECT OF MICROSTRUCTURE ON THE UPPER AND LOWER LIMITS OF MATERIAL TOUGHNESS IN ELASTIC-PLASTIC FRACTURE
    WNUK, MP
    MURA, T
    [J]. MECHANICS OF MATERIALS, 1983, 2 (01) : 33 - 46
  • [4] THE EFFECT OF CONSTRAINT ON ELASTIC-PLASTIC FRACTURE
    AURICH, D
    SOMMER, E
    [J]. STEEL RESEARCH, 1988, 59 (08): : 358 - 367
  • [5] Composites with fractal microstructure: The effect of long range correlations on elastic-plastic and damping behavior
    Picu, R. C.
    Li, Z.
    Soare, M. A.
    Sorohan, S.
    Constantinescu, D. M.
    Nutu, E.
    [J]. MECHANICS OF MATERIALS, 2014, 69 (01) : 251 - 261
  • [6] Revising Elastic-Plastic Contact Models of Fractal Surfaces
    Ji, Cuicui
    Jiang, Wei
    [J]. PROCEEDINGS OF THE 2016 5TH INTERNATIONAL CONFERENCE ON MEASUREMENT, INSTRUMENTATION AND AUTOMATION (ICMIA 2016), 2016, 138 : 123 - 129
  • [7] ELASTIC-PLASTIC MODELS OF SURFACE CRACKS IN TENSILE PANELS
    READ, DT
    MCHENRY, HI
    PETROVSKI, B
    [J]. EXPERIMENTAL MECHANICS, 1989, 29 (02) : 226 - 230
  • [8] ACCURATE NUMERICAL-SOLUTIONS FOR ELASTIC-PLASTIC MODELS
    SCHREYER, HL
    KULAK, RF
    KRAMER, JM
    [J]. JOURNAL OF PRESSURE VESSEL TECHNOLOGY-TRANSACTIONS OF THE ASME, 1979, 101 (03): : 226 - 234
  • [10] ELASTIC-PLASTIC WAVE-PROPAGATION - TRANSMISSION OF ELASTIC-PLASTIC BOUNDARIES
    CEKIRGE, HM
    ROGERS, C
    [J]. ARCHIVES OF MECHANICS, 1977, 29 (01): : 125 - 141