Based on the time-dependent strain cyclic characteristics and fatigue behaviors of SS304 stainless steel under multi-axial cyclic loading at 700℃, and in the frame of unified visoco-plastic cyclic constitutive model and continuum damage mechanics theory, the damage-coupled multi-axial time-dependent constitutive model and fatigue failure model were proposed. In the model, the evolution equation of damage was introduced in and the time-dependent effects, e.g. holding time, loading rate, were taken into account. The model was applied to the simulation of whole-life cyclic deformation behaviors and prediction of LCF life for SS304 stainless steel in multi-axial time-dependent low cycle fatigue tests. It is shown that the simulated results agree well with experimental ones.
LIU Yu-Jie
. A damage-coupled multi-axial time-dependent low cycle fatigue failure model for SS304 stainless steel at high temperature[J]. Acta Metallurgica Sinica (English Letters), 2011
, 24(2)
: 169
-174
.
DOI: 10.11890/1006-7191-112-169
[1] D. Socie, ASME J Eng Mater Technol 109 (1987) 293.
[2] W.F. Pan, C.Y. Hung and L.L. Chen, Int J Fatigue 21 (1999) 3.
[3] S.D. Zhang, M. Harada, K. Ozaki and M. Sakane, Int J Fatigue 29 (2007) 852.
[4] X.Q. Shi, H.L. Pang, W. Zhou and Z.P. Wang, Int J Fatigue 22 (2002) 217.
[5] X.J. Yang, C.L. Chow and K.J. Lau, Int J Fatigue 25 (2003) 533.
[6] J. Lemaitre and R. Desmorat, Engineering Damage Mechanics (Springer-Verlag, Berlin, 2005) p.26.
[7] M. Abdel-Karim and N. Ohno, Int J Plast 16 (2000) 225.
[8] E. Tanaka, Eur J Mech A/Solids 13 (1994) 155
[9] Y. Jiang and P. Kurath, Int J Plast 13 (1997) 743.
[10] X.J. Yang, Y. Luo and Q. Gao, ASME: Journal of Electronic Packaging 129 (2007) 41.
[11] J. Zhang, PhD Dissertation (Southwest Jiaotong University, Chengdu, 2006).