A CONSTITUTIVE MODEL FOR ANISOTROPIC CREEP DEFORMATION
Citation
M. Kawai, A CONSTITUTIVE MODEL FOR ANISOTROPIC CREEP DEFORMATION, Journal of engineering materials and technology, 116(2), 1994, pp. 142-147
Categorie Soggetti
Engineering, Mechanical","Material Science
SICI code
0094-4289(1994)116:2<142:ACMFAC>2.0.ZU;2-L
Abstract
Anisotropic creep behavior of polycrystalline metals under repeated st
ress changes is modeled from a phenomenological point of view. The cre
ep model consists of basic constitutive equations (BCE) and an auxilia
ry hardening rule (AUX) to enhance the predictive capability of the BC
E. The BCE is characterized by a kinematic hardening variable which is
defined as the sum of two component variables, one represents the bac
k stress and the other a flow resistance in the opposite direction of
the stress deviator. The AUX is governed by a memory region in which o
nly the evolution of the back stress takes place. The validity of the
creep model is discussed on the basis of simulations for multiaxial no
nproportional repeated creep of type 304 stainless steel at 650-degree
s-C.