Constitutive modeling of cyclic deformation of metals under strain controlled axial extension and cyclic torsion

被引:10
|
作者
Mroz, Z. [1 ]
Maciejewski, J. [2 ]
机构
[1] Polish Acad Sci, Inst Fundamental Technol Res, Pawinskiego 5b, PL-02106 Warsaw, Poland
[2] Warsaw Univ Technol, Inst Construct Machinery Engn, Fac Automot & Construct Machinery Engn, 84 Narbutta, PL-02524 Warsaw, Poland
关键词
KINEMATIC HARDENING RULES; SS304; STAINLESS-STEEL; PLASTICITY MODEL; MULTISURFACE; EVOLUTION; BEHAVIOR; STRESS;
D O I
10.1007/s00707-017-1982-5
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The present work provides a formulation of a constitutive model for metals with the aim to simulate cyclic deformation under axial extension or compression assisted by cyclic torsional (or shearing) straining of specified amplitude and frequency. Such a mode of deformation was recently implemented in technological processes such as extrusion, forging and rolling, cf. Bochniak and Korbel (Eng Trans 47:351-367, 1999, J Mater Process Technol 134:120-134, 2003, Philos Mag 93:1883-1913, 2013, Mater Sci Technol 16:664-674, 2000). The constitutive model accounting for combined hardening (isotropic-kinematic) with both hardening and recovery effects is presented and calibrated for several materials: pure copper, aluminum alloy (2024), and austenitic steel. The experimental data are used to specify model parameters of materials tested, and next the cyclic response for different shear strain amplitudes is predicted and confronted with empirical data. The constitutive model is developed in order to simulate technological processes assisted by cyclic deformation.
引用
收藏
页码:475 / 496
页数:22
相关论文
共 50 条
  • [1] Constitutive modeling of cyclic deformation of metals under strain controlled axial extension and cyclic torsion
    Z. Mróz
    J. Maciejewski
    Acta Mechanica, 2018, 229 : 475 - 496
  • [2] CONSTITUTIVE MODELING OF METALS UNDER NONPROPORTIONAL CYCLIC LOADING
    DOONG, SH
    SOCIE, DF
    JOURNAL OF ENGINEERING MATERIALS AND TECHNOLOGY-TRANSACTIONS OF THE ASME, 1991, 113 (01): : 23 - 30
  • [3] Constitutive modeling of drawing and extrusion with cyclic torsion
    Kong, LX
    Hodgson, PD
    ENGINEERING PLASTICITY FROM MACROSCALE TO NANOSCALE PTS 1 AND 2, 2003, 233-2 : 101 - 106
  • [4] ACCUMULATION OF AXIAL STRAIN OF A CYLINDRICAL BAR UNDER COMBINED CYCLIC TORSION AND AXIAL LOAD.
    Inoue, Kunio
    Nakagawa, Kenji
    Fujiyama, Masami
    Technology Reports of the Osaka University, 1976, 26 (1276-1307): : 223 - 231
  • [5] Strain-induced coarsening in nanocrystalline metals under cyclic deformation
    Schiotz, J
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2004, 375 : 975 - 979
  • [6] MODELLING THE CYCLIC DEFORMATION BEHAVIOUR OF GRAY IRON UNDER AXIAL STRAIN.
    Downing, S.D.
    Socie, D.F.
    1600, (22):
  • [7] Modeling of cyclic elastoplastic deformation of metals under arbitrary loading trajectories
    Volkov, I. A.
    Korotkikh, Yu. G.
    Tarasov, I. S.
    STRENGTH OF MATERIALS, 2009, 41 (06) : 672 - 682
  • [8] Modeling of cyclic elastoplastic deformation of metals under arbitrary loading trajectories
    I. A. Volkov
    Yu. G. Korotkikh
    I. S. Tarasov
    Strength of Materials, 2009, 41 : 672 - 682
  • [9] Constitutive modeling of strain range dependent cyclic hardening
    Kang, GZ
    Ohno, N
    Nebu, A
    INTERNATIONAL JOURNAL OF PLASTICITY, 2003, 19 (10) : 1801 - 1819
  • [10] Elastoplastic constitutive equation of metals under cyclic loading
    Hashiguchi, Koichi
    Ueno, Masami
    INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 2017, 111 : 86 - 112