• Title of article

    Hardening evolution of AZ31B Mg sheet

  • Author/Authors

    X.Y. Lou، نويسنده , , M. Li، نويسنده , , R.K. Boger، نويسنده , , S.R. Agnew، نويسنده , , Robert R.H. Wagoner، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    43
  • From page
    44
  • To page
    86
  • Abstract
    The monotonic and cyclic mechanical behavior of O-temper AZ31B Mg sheet was measured in large-strain tension/compression and simple shear. Metallography, acoustic emission (AE), and texture measurements revealed twinning during in-plane compression and untwinning upon subsequent tension, producing asymmetric yield and hardening evolution. A working model of deformation mechanisms consistent with the results and with the literature was constructed on the basis of predominantly basal slip for initial tension, twinning for initial compression, and untwinning for tension following compression. The activation stress for twinning is larger than that for untwinning, presumably because of the need for nucleation. Increased accumulated hardening increases the twin nucleation stress, but has little effect on the untwinning stress. Multiple-cycle deformation tends to saturate, with larger strain cycles saturating more slowly. A novel analysis based on saturated cycling was used to estimate the relative magnitude of hardening effects related to twinning. For a 4% strain range, the obstacle strength of twins to slip is 3 MPa, approximately 1/3 the magnitude of textural hardening caused by twin formation (10 MPa). The difference in activation stress of twinning versus untwinning (11 MPa) is of the same magnitude as textural hardening.
  • Keywords
    Untwinning , Plastic deformation , Slip , Twinning , Tension/compression testing , Simple shear testing , acoustic emission , Texture , Magnesium alloy
  • Journal title
    International Journal of Plasticity
  • Serial Year
    2007
  • Journal title
    International Journal of Plasticity
  • Record number

    1257357