Steel and Composite Structures
Volume 49, Number 1, 2023, pages 1-17
DOI: 10.12989/scs.2023.49.1.001
Multiaxial ratcheting assessment of Z2CND18.12N steel using modified A-V hardening rule
Xiaohui Chen, Yang Zhou, Wenwu Liu and Xu Zhao
Abstract
Based on Ahmadzadeh-Varvani hardening rule (A-V model), multiaxial ratcheting effect of Z2CND18.12N
austenitic stainless steel is simulated by ABAQUS with user subroutine UMAT. The results show that the predicted results of the
origin multiaxial A-V model are lower than the experimental data, and it is difficult to control ratcheting strain rate. In order to
improve the predicted capability of A-V model, the A-V model is modified. In this study. Moreover, under the assumption of the
von Mises yield criterion and normal plasticity flow rule, we develop a numerical algorithm of plastic strain with the improved
model to implement the finite element calculation of the model. Internal iteration in the numerical algorithm was implemented
with the Euler backward method, which calculated the trial strain for each equilibrium iteration using the consistent tangent
matrix. With a user subroutine, the proposed model is programmed into ABAQUS for a user - executable version. By simulating
the uniaxial ratcheting of a round bar made of Z2CND18.12N austenitic stainless steel, we observe that the predicted results
simulated by ABAQUS with UMAT are compared with the experimental data. The predicted results of the improved multiaxial
A-V model are consistent well with the experimental data.
Key Words
austenitic stainless steel; constitutive model; euler backward method; multiaixal ratcheting; numerical algorithm
Address
Xiaohui Chen, Yang Zhou, Wenwu Liu and Xu Zhao:School of Control Engineering, Northeastern University at Qinhuangdao, Qinhuangdao 066004, China